| Journal Articles: 644 results |
|
|
The Fuge Tube Diode Array Spectrophotometer B. T. Arneson, S. R. Long, K. K. Stewart, and J. J. Lagowski Presents details for adapting a diode array UVvis spectrophotometer to incorporate the use of polypropylene microcentrifuge tubesfuge tubesas cuvettes. The fuge tubes also can serve as reaction vessels, which permits the ready study of chemical systems involving heterogeneous phases by eliminating the need for tedious separations. Arneson, B. T.; Long, S. R.; Stewart, K. K.; Lagowski, J. J. J. Chem. Educ. 2008, 85, 1663.
Laboratory Equipment / Apparatus |
Solutions / Solvents |
Spectroscopy |
UV-Vis Spectroscopy
|
Investigating the Stability of Benzoyl Peroxide in Over-the-Counter Acne Medications Marina Canepa Kittredge, Kevin W. Kittredge, Melissa S. Sokol, Arlyne M. Sarquis, and Laura M. Sennet Students use peroxide strips to investigate the stability of the benzoyl peroxide found in an over-the-counter acne medication when added to various solutions of water, ethanol, polyethylene glycol, and isopropyl myristate. Canepa Kittredge, Marina; Kittredge, Kevin W.; Sokol, Melissa S.; Sarquis, Arlyne M.; Sennet, Laura M. J. Chem. Educ. 2008, 85, 1655.
Consumer Chemistry |
Drugs / Pharmaceuticals |
Nonmajor Courses |
Solutions / Solvents
|
The Electrochemical Synthesis of Transition-Metal Acetylacetonates S. R. Long, S. R. Browning, and J. J. Lagowski The electrochemical synthesis of transition-metal acetylacetonates can assist in the transformation of an entry-level laboratory course into a research-like environment where all members of a class are working on the same problem, but each student has a personal responsibility for the synthesis and characterization of a specific compound. Long, S. R.; Browning, S. R.; Lagowski, J. J. J. Chem. Educ. 2008, 85, 1429.
Coordination Compounds |
Electrochemistry |
IR Spectroscopy |
Physical Properties |
Synthesis |
Transition Elements |
UV-Vis Spectroscopy
|
New Observations on the Copper-to-Silver-to-Gold Demonstration Dorin Bejan, Jeff Hastie, and Nigel J. Bunce This analysis of the classic copper-to-silver-to-gold demonstration describes the deposition of zinc in the form of the silver-colored alloy ?-brass, the evolution of hydrogen at the copper cathode, and the behavior of the associated electrochemical cell. Bejan, Dorin; Hastie, Jeff; Bunce, Nigel J. J. Chem. Educ. 2008, 85, 1381.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Oxidation State |
Oxidation / Reduction
|
Introducing Undergraduate Students to Electrochemistry: A Two-Week Discovery Chemistry Experiment Kenneth V. Mills, Richard S. Herrick, Louise W. Guilmette, Lisa P. Nestor, Heather Shafer, and Mauri A. Ditzler, Within the framework of a laboratory-focused, guided-inquiry pedagogy, students discover the Nernst equation, the spontaneity of galvanic cells, concentration cells, and the use of electrochemical data to calculate equilibrium constants. Mills, Kenneth V.; Herrick, Richard S.; Guilmette, Louise W.; Nestor, Lisa P.; Shafer, Heather;Ditzler, Mauri A. J. Chem. Educ. 2008, 85, 1116.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Equilibrium
|
Construction of a Polyaniline Nanofiber Gas Sensor Shabnam Virji, Bruce H. Weiller, Jiaxing Huang, Richard Blair, Heather Shepherd, Tanya Faltens, Philip C. Haussmann, Richard B. Kaner, and Sarah H. Tolbert The objectives of this lab are to synthesize different diameter polyaniline nanofibers and compare them as sensor materials. Its advantages include simplicity and low cost, making it suitable for both high school and college students, particularly in departments with modest means. Virji, Shabnam; Weiller, Bruce H.; Huang, Jiaxing; Blair, Richard; Shepherd, Heather; Faltens, Tanya; Haussmann, Philip C.; Kaner, Richard B.; Tolbert, Sarah H. J. Chem. Educ. 2008, 85, 1102.
Acids / Bases |
Aromatic Compounds |
Conductivity |
Hydrogen Bonding |
Oxidation / Reduction |
Oxidation State |
pH |
Polymerization |
Synthesis
|
Make a Match Erika K. Jacobsen Suggests using this month's JCE Classroom Activity in conjunction with the laboratory exercise that follows it. Jacobsen, Erica K. J. Chem. Educ. 2008, 85, 1090.
Calibration |
Carbohydrates |
Physical Properties |
Solutions / Solvents |
Quantitative Analysis
|
Measuring the Density of a Sugar Solution Karen I. Peterson This experiment addresses the concept of equipment calibration for reducing systematic error. Students prepare and measure the densities of sucrose solutions with simple glassware that has been calibrated using the density of water. By careful work, students can determine the density to within 0.5%. allowing accuracy to be a major component of the final grade. Peterson, Karen I. J. Chem. Educ. 2008, 85, 1089.
Calibration |
Carbohydrates |
Physical Properties |
Quantitative Analysis |
Solutions / Solvents
|
[#97] The Sweeter Side of Density Michael Davis and Charles Henry Students determine the density of different sugar solutions and then devise a method for layering them in a graduated cylinder. Dyeing the solutions with food coloring results in a rainbow-colored, heterogeneous mixture. Davis, Michael; Henry, Charles. J. Chem. Educ. 2008, 85, 1088A.
Physical Properties |
Solutions / Solvents |
Aqueous Solution Chemistry |
Student-Centered Learning
|
Using Molecular Dynamics Simulation To Reinforce Student Understanding of Intermolecular Forces Phillip R. Burkholder, Gordon H. Purser, and Renee S. Cole This article presents a series of experiments incorporating molecular dynamics simulations which predict the motion of chemical species based on the application of empirical rules and a physical analysis of the forces that act between the species. These motions can then be shown in vivid graphical form. Burkholder, Phillip R.; Purser, Gordon H.; Cole, Renee S. J. Chem. Educ. 2008, 85, 1071.
Computational Chemistry |
Hydrogen Bonding |
Molecular Mechanics / Dynamics |
Physical Properties |
Solutions / Solvents
|
Preparation of Conducting Polymers by Electrochemical Methods and Demonstration of a Polymer Battery Hiromasa Goto, Hiroyuki Yoneyama, Fumihiro Togashi, Reina Ohta, Akitsu Tsujimoto, Eiji Kita, and Ken-ichi Ohshima The electrochemical polymerization of aniline and pyrrole, and demonstrations of electrochromism and the polymer battery effect, are presented as demonstrations suitable for high school and introductory chemistry at the university level. Goto, Hiromasa; Yoneyama, Hiroyuki; Togashi, Fumihiro; Ohta, Reina; Tsujimoto, Akitsu; Kita, Eiji; Ohshima, Ken-ichi. J. Chem. Educ. 2008, 85, 1067.
Aromatic Compounds |
Conductivity |
Electrochemistry |
Materials Science |
Oxidation / Reduction |
Polymerization
|
A Hand-Held Ammonia Fountain Nicholas C. Thomas and Stephen Faulk A plastic juice bottle, filled with ammonia gas generated by combining aqueous ammonia and sodium hydroxide, provides a convenient demonstration of the ammonia fountain and gas solubility. Thomas, Nicholas C.; Faulk, Stephen. J. Chem. Educ. 2008, 85, 1063.
Aqueous Solution Chemistry |
Gases |
Solutions / Solvents
|
Resolving Spectral Lines with a Periscope-Type DVD Spectroscope Fumitaka Wakabayashi Describes the periscope-type of DVD spectroscope and demonstrates the numerical analysis of its emission and absorption spectra. This improved design allows one to observe and photograph visible spectra more easily and clearly than earlier models; it thus has the potential to be a cost-effective, powerful, and versatile tool for science education. Wakabayashi, Fumitaka. J. Chem. Educ. 2008, 85, 849.
Atomic Spectroscopy |
Solutions / Solvents |
Spectroscopy |
UV-Vis Spectroscopy
|
A Simple Laboratory Experiment To Determine the Kinetics of Mutarotation of D-Glucose Using a Blood Glucose Meter Carlos E. Perles and Pedro L. O. Volpe A simple commercial blood glucose meter is used to follow the kinetics of mutarotation of D-glucose in aqueous solution. The results may be compared with those obtained using an automatic polarimeter. Perles, Carlos E.; Volpe, Pedro L. O. J. Chem. Educ. 2008, 85, 686.
Aqueous Solution Chemistry |
Bioanalytical Chemistry |
Carbohydrates |
Chirality / Optical Activity |
Enzymes |
Kinetics |
Solutions / Solvents |
Stereochemistry
|
Prussian Blue: Artists' Pigment and Chemists' Sponge Mike Ware The variable composition of Prussian blue tantalized chemists until investigations by X-ray crystallography in the late 20th century explained its many properties and uses. Ware, Mike. J. Chem. Educ. 2008, 85, 612.
Applications of Chemistry |
Coordination Compounds |
Dyes / Pigments |
Electrochemistry |
Oxidation / Reduction |
Photochemistry |
Toxicology
|
Metal Electrodeposition on an Integrated, Screen-Printed Electrode Assembly Yieu Chyan and Oliver Chyan Screen-printed, carbon strip electrodes illustrate the essential concepts of electrochemistry and electrodeposition; their light weight facilitates sensitive measurements of electrodeposited metal, allowing for the exploration of Faraday's law and electrodeposition efficiency. Chyan, Yieu; Chyan, Oliver. J. Chem. Educ. 2008, 85, 565.
Electrochemistry |
Metals |
Oxidation / Reduction |
Quantitative Analysis
|
Yet Another Variation on the Electrolysis of Water at Iron Nails Mark T. Stauffer and Justin P. Fox Describes a variation on the electrolysis of water with iron nails in which a sharp contrast in the colors produced effectively demonstrates electrolysis and the diffusion of oxidized and reduced species from the electrodes. Stauffer, Mark T.; Fox, Justin P. J. Chem. Educ. 2008, 85, 523.
Acids / Bases |
Electrochemistry |
Oxidation / Reduction |
Stoichiometry |
Water / Water Chemistry |
Electrolytic / Galvanic Cells / Potentials
|
Using Hydrogen Balloons To Display Metal Ion Spectra James H. Maynard Describes a procedure for igniting hydrogen-filled balloons containing metal salts to obtain the brightest possible flash while minimizing the quantity of airborne combustion products. Maynard, James H. J. Chem. Educ. 2008, 85, 519.
Atomic Properties / Structure |
Atomic Spectroscopy |
Gases |
Metals |
Solutions / Solvents
|
Netorials Rebecca Ottosen, John Todd, Rachel Bain, Mike Miller, Liana Lamont, Mithra Biekmohamadi, and David B. Shaw Netorials is a collection of about 30 online tutorials on general chemistry topics designed as a supplement for high school or college introductory courses. Each Netorial contains several pages of interactive instruction that includes animated mouse-overs, questions for students to answer, and manipulable molecular structures. Ottosen, Rebecca; Todd, John; Bain, Rachel; Miller, Mike; Lamont. Liana; Biekmohamadi, Mithra; Shaw, David B. J. Chem. Educ. 2008, 85, 463.
Acids / Bases |
Electrochemistry |
Reactions |
VSEPR Theory |
Stoichiometry
|
Pennies and Eggs: Initiation into Inquiry Learning for Preservice Elementary Education Teachers Donald J. Wink and Jeong Hye Hwang-Choe Describes two labs incorporating the Science Writing Heuristic in a course for preservice students in elementary education. The first lab is a discovery activity involving the change in composition and mass of pennies in 1982; the second uses flotation methods to separate hard-boiled and uncooked eggs. Wink, Donald J.; Hwang-Choe, Jeong Hye. J. Chem. Educ. 2008, 85, 396.
Aqueous Solution Chemistry |
Materials Science |
Solutions / Solvents |
Physical Properties
|
Investigating Students' Ability To Transfer Ideas Learned from Molecular Animations of the Dissolution Process Resa M. Kelly and Loretta L. Jones This study examines what features of the particulate nature of matter learned from viewing two animations of sodium chloride dissolution students would transfer to their descriptions of the participation of aqueous sodium chloride in a chemical reaction. Kelly, Resa M.; Jones, Loretta L. J. Chem. Educ. 2008, 85, 303.
Aqueous Solution Chemistry |
Precipitation / Solubility |
Solutions / Solvents |
Constructivism
|
A Simple Experiment in the Separation of a Solid-Phase Mixture and Infrared Spectroscopy for Introductory Chemistry Paul S. Szalay In this guided-inquiry experiment, a two-component solid mixture of caffeine and ibuprofen is separated through a series of solution extractions and precipitations. The components are then analyzed using IR spectrophotometry to determine how effectively they were separated. Szalay, Paul S. J. Chem. Educ. 2008, 85, 285.
Acids / Bases |
Drugs / Pharmaceuticals |
IR Spectroscopy |
Qualitative Analysis |
Separation Science |
Solutions / Solvents
|
Connecting Solubility, Equilibrium, and Periodicity in a Green, Inquiry Experiment for the General Chemistry Laboratory Kristen L. Cacciatore, Jose Amado, Jason J. Evans, and Hannah Sevian Presents a novel first-year chemistry experiment that asks students to replicate procedures described in sample lab reports that lack essential information. This structure is designed to promote students' experimental design and data analysis skills as well as their understanding of the importance and essential qualities of written and verbal communication between scientists. Cacciatore, Kristen L.; Amado, Jose; Evans, Jason J.; Sevian, Hannah. J. Chem. Educ. 2008, 85, 251.
Equilibrium |
Green Chemistry |
Periodicity / Periodic Table |
Solutions / Solvents |
Stoichiometry |
Titration / Volumetric Analysis
|
Electrochemical Polishing of Silverware: A Demonstration of Voltaic and Galvanic Cells Michelle M. Ivey and Eugene T. Smith Using a battery and a graphite electrode, an electrolytic cell is constructed to generate a layer of tarnish on silverware. Students then determine that the tarnish can be removed by electrochemically converting it back to silver using aluminum foil and baking soda. Ivey, Michelle M.; Smith, Eugene T. J. Chem. Educ. 2008, 85, 68.
Consumer Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
New Analytical Method for the Determination of Detergent Concentration in Water by Fabric Dyeing Set Seng, Masakazu Kita, and Reiko Sugihara This article describes a high school classroom activity in which an acrylic fabric is used as the extraction medium in the analysis of detergent concentration rather than more harmful organic solvents. An handmade reflection photometer, assembled with inexpensive materials such as LED, PVC tube, and CdS sensor, is used to determine the detergent concentration. Seng, Set; Kita, Masakazu; Sugihara, Reiko. J. Chem. Educ. 2007, 84, 1803.
Aqueous Solution Chemistry |
Consumer Chemistry |
Dyes / Pigments |
Laboratory Equipment / Apparatus |
Quantitative Analysis |
Solutions / Solvents |
Water / Water Chemistry
|
How Many Atomic Layers of Zinc Are in a Galvanized Iron Coating? Shui-Ping Yang This article describes a guided inquiry and problem solving experiment in which students use a novel gasometric assembly to determine the thickness and number of atomic layers of zinc coating on galvanized iron wires and nails. Yang, Shui-Ping. J. Chem. Educ. 2007, 84, 1792.
Aqueous Solution Chemistry |
Consumer Chemistry |
Electrochemistry |
Gases |
Laboratory Equipment / Apparatus |
Quantitative Analysis |
Rate Law
|
Freezing Point of Milk: A Natural Way To Understand Colligative Properties Mercedes Novo, Belén Reija, and Wajih Al-Soufi Presents a laboratory experiment that illustrates the use of freezing point measurements to control milk quality and determine molecular weight. Novo, Mercedes; Reija, Belén; Al-Soufi, Wajih. J. Chem. Educ. 2007, 84, 1673.
Consumer Chemistry |
Food Science |
Natural Products |
Phases / Phase Transitions / Diagrams |
Solutions / Solvents
|
A Fast Coulometric Estimation of Avogadro's Number Nicholas C. Thomas Using simple materials found in any high school or college laboratory, an electrochemical method of determining Avogadro's number is presented. Thomas, Nicholas C. J. Chem. Educ. 2007, 84, 1667.
Electrochemistry |
Gases
|
The Chemical Composition of Maple Syrup David W. Ball Explores the complex chemical composition of maple syrup. Ball, David W. J. Chem. Educ. 2007, 84, 1647.
Descriptive Chemistry |
Food Science |
Plant Chemistry |
Natural Products |
Solutions / Solvents
|
The Chemical Composition of Honey David W. Ball Explores the complex chemical composition of honey. Ball, David W. J. Chem. Educ. 2007, 84, 1643.
Descriptive Chemistry |
Food Science |
Natural Products |
Solutions / Solvents
|
Redox Titration of Ferricyanide to Ferrocyanide with Ascorbic Acid: Illustrating the Nernst Equation and Beer–Lambert Law Tina H. Huang, Gail Salter, Sarah L. Kahn, and Yvonne M. Gindt In this simple experiment, which illustrates the Nernst equation and BeerLambert law, students monitor the reduction of ferricyanide ion to ferrocyanide electrochemically and spectrophoto-metrically upon titration with ascorbic acid. The Nernst equation is used to calculate the standard reduction potential of the redox couple at pH 7 and the number of electrons transferred. Huang, Tina H.; Salter, Gail; Kahn, Sarah L.; Gindt, Yvonne M. J. Chem. Educ. 2007, 84, 1461.
Coordination Compounds |
Electrochemistry |
Potentiometry |
Spectroscopy |
UV-Vis Spectroscopy
|
Mercury Beating Heart: Modifications to the Classical Demonstration Metodija Najdoski, Valentin Mirceski, Vladimir M. Petruševski, and Sani Demiri The classic mercury beating heart demonstration is modified with various electrolytes. Najdoski, Metodija; Mirceski, Valentin; Petruševski, Vladimir M.; Demiri, Sani. J. Chem. Educ. 2007, 84, 1292.
Electrochemistry |
Oxidation / Reduction |
Surface Science
|
Building a Low-Cost, Six-Electrode Instrument To Measure Electrical Properties of Self-Assembled Monolayers of Gold Nanoparticles Ralph W. Gerber and Maria Oliver-Hoyo The multimeter testing apparatus described is an inexpensive and easy to construct analogdigital meter that can be used for quantitative measurements of self-assembled gold monolayers. Gerber, Ralph W.; Oliver-Hoyo, Maria. J. Chem. Educ. 2007, 84, 1177.
Laboratory Equipment / Apparatus |
Nanotechnology |
Surface Science |
Electrochemistry
|
Determining the Pressure inside an Unopened Carbonated Beverage Hans de Grys Determining the pressure of carbon dioxide inside a sealed soft drink can represents a challenging student exercise. Several methods are discussed for solving the problem, including applying the ideal gas law, gas collection via water displacement, and Henry's law. de Grys, Hans. J. Chem. Educ. 2007, 84, 1117.
Applications of Chemistry |
Aqueous Solution Chemistry |
Consumer Chemistry |
Food Science |
Gases |
Solutions / Solvents |
Student-Centered Learning
|
Peer-Developed and Peer-Led Labs in General Chemistry Lorena Tribe and Kim Kostka Describes a student-developed and led laboratory curriculum as a model for producing a more student-centered and rich laboratory experience in general chemistry laboratories. Tribe, Lorena; Kostka, Kim. J. Chem. Educ. 2007, 84, 1031.
Acids / Bases |
Electrochemistry |
Equilibrium |
Kinetics |
Laboratory Management |
Thermodynamics |
Student-Centered Learning
|
The Physical Meaning of the Mathematical Formalism Present in Limiting Chemical Equations; Or, How Dilute Is Dilute? C. Contreras-Ortega, N. Bustamante, J. L. Guevara, C. Portillo, and V. Kesternich Proposes general mathematical formulations to offer students a better understanding of the real scope of scientific expressions dealing with limiting physical conditions, such as those concerning dilute and concentrated solutions and low and high temperatures and pressures. Contreras-Ortega, C.; Bustamante, N.; Guevara, J. L.; Portillo, C.; Kesternich, V. J. Chem. Educ. 2007, 84, 788.
Aqueous Solution Chemistry |
Equilibrium |
Gases |
Mathematics / Symbolic Mathematics |
Quantitative Analysis |
Solutions / Solvents
|
Textbook Error: Short Circuiting an Electrochemical Cell Judith M. Bonicamp and Roy W. Clark Reports a serious error in the electrochemical diagrams in eight, 21st century texts and offers an analogy to electrical potential energy and a diagram to clarify the interrelationships between electromotive force E, reaction quotient Q, and Gibbs free energy G. Bonicamp, Judith M.; Clark, Roy W. J. Chem. Educ. 2007, 84, 731.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Exploring Faraday's Law of Electrolysis Using Zinc–Air Batteries with Current Regulative Diodes Masahiro Kamata and Miei Paku Describes a new educational experiment using low-cost zincair batteries and current regulative diode arrays to quickly confirm Faraday's law of electrolysis. Kamata, Masahiro; Paku, Miei. J. Chem. Educ. 2007, 84, 674.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Laboratory Equipment / Apparatus |
Oxidation / Reduction
|
Small-Scale and Low-Cost Electrodes for "Standard" Reduction Potential Measurements Per-Odd Eggen, Lise Kvittingen, and Truls Grønneberg This article describes how to construct three simple and inexpensive, microchemistry electrodes: hydrogen, chlorine, and copper. Eggen, Per-Odd; Grønneberg, Truls; Kvittingen, Lise. J. Chem. Educ. 2007, 84, 671.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Laboratory Equipment / Apparatus |
Microscale Lab |
Student-Centered Learning
|
A Lemon Cell Battery for High-Power Applications Kenneth R. Muske, Christopher W. Nigh, and Randy D. Weinstein This article discusses the development of a lemon cell battery for high-power applications such as radios, portable cassette or CD players, and battery-powered toys. Muske, Kenneth R.; Nigh, Christopher W.; Weinstein, Randy D. J. Chem. Educ. 2007, 84, 635.
Applications of Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
A Simple and Inexpensive Salt Bridge for Demonstrations Involving a Galvanic Cell Charles A. Liberko A saturated sponge is a quick, economical, and reliable way to allow ions to transfer between the two half cells in a galvanic cell. Liberko, Charles A. J. Chem. Educ. 2007, 84, 597.
Conductivity |
Electrochemistry |
Laboratory Equipment / Apparatus
|
Hydrophilic Inorganic Macro-Ions in Solution: Unprecedented Self-Assembly Emerging from Historical "Blue Waters" Tianbo Liu, Ekkehard Diemann, and Achim Müller The behavior of supramolecular structures in solution is different from that of simple ions, polymers, surfactant micelles, and colloids. New research involving polyoxometalates, which are fully hydrophilic but tend to self-associate into macro-ionic structures, may change our understanding of inorganic ionic solutions. Liu, Tianbo; Diemann, Ekkehard; Müller, Achim. J. Chem. Educ. 2007, 84, 526.
Aqueous Solution Chemistry |
Colloids |
Materials Science |
Nanotechnology |
Solutions / Solvents |
Spectroscopy |
Lasers |
Physical Properties
|
Using Dalton's Law of Partial Pressures To Determine the Vapor Pressure of a Volatile Liquid Fred R. Hilgeman, Gary Bertrand, and Brent Wilson This experiment, designed for a general chemistry laboratory, illustrates the use of Dalton's law of partial pressures to determine the vapor pressure of a volatile liquid. Hilgeman, Fred R.; Bertrand, Gary; Wilson, Brent. J. Chem. Educ. 2007, 84, 469.
Gases |
Liquids |
Physical Properties |
Solutions / Solvents
|
Flame Emission Spectrometry in General Chemistry Labs: Solubility Product (Ksp) of Potassium Hydrogen Phthalate Frazier W. Nyasulu, William Cusworth III, David Lindquist, and John Mackin In this general chemistry laboratory, flame emission spectrometry is used to determine the potassium ion concentration in saturated solutions of potassium hydrogen phthalate. From these data the solubility products, the Gibbs free energies of solution, the standard enthalpy of solution, and the standard entropy of solution are calculated. Nyasulu, Frazier W.; Cusworth, William, III; Lindquist, David; Mackin, John. J. Chem. Educ. 2007, 84, 456.
Acids / Bases |
Atomic Properties / Structure |
Spectroscopy |
Equilibrium |
Quantitative Analysis |
Thermodynamics |
Titration / Volumetric Analysis |
Solutions / Solvents |
Aqueous Solution Chemistry |
Atomic Spectroscopy
|
Introducing New Learning Tools into a Standard Classroom: A Multi-Tool Approach to Integrating Fuel-Cell Concepts into Introductory College Chemistry Matthew J. DAmato, Kenneth W. Lux, Kenneth A. Walz, Holly Walter Kerby, and Barbara Anderegg Describes an approach to deliver the science and engineering concepts involved in fuel-cell technology to the introductory college chemistry classroom using traditional lectures, multimedia learning objects, and a lab activity to enhance student learning in a hands-on, interactive manner. DAmato, Matthew J.; Lux, Kenneth W.; Walz, Kenneth A.; Kerby, Holly Walter; Anderegg, Barbara. J. Chem. Educ. 2007, 84, 248.
Electrochemistry |
Materials Science |
Nanotechnology |
Oxidation / Reduction |
Membranes
|
More Thoughts on the Narra Tree Fluorescence A. Ulises Acuña The source of L. nephriticum and the substance responsible for the intense blue fluorescence in an earlier published demonstration may require further consideration. Acuña, A. Ulises. J. Chem. Educ. 2007, 84, 231.
Fluorescence Spectroscopy |
Natural Products |
Plant Chemistry |
Solutions / Solvents |
UV-Vis Spectroscopy |
Acids / Bases
|
Effectiveness of a MORE Laboratory Module in Prompting Students To Revise Their Molecular-Level Ideas about Solutions Lydia T. Tien, Melonie A. Teichert, and Dawn Rickey This study investigates the effectiveness of a ModelObserveReflectExplain (MORE) laboratory module in prompting three different populations of general chemistry students to revise their molecular-level ideas regarding chemical compounds dissolved in water. Tien, Lydia T.; Teichert, Melonie A.; Rickey, Dawn. J. Chem. Educ. 2007, 84, 175.
Aqueous Solution Chemistry |
Conductivity |
Ionic Bonding |
Solutions / Solvents
|
An Easy Way to Personalize Your Iron or Stainless Steel Items Ejaz ur Rehman Describes a simple and useful method for permanently labeling metallic items by the application of alternating current through a mask. Rehman, Ejaz ur. J. Chem. Educ. 2007, 84, 40.
Electrochemistry |
Oxidation / Reduction
|
pHantastic Fluorescence Mark Muyskens Students easily extract a fluorescent substance from shavings of a wood called narra. The fluorescence is dramatically pH dependent and can be turned on and off repeatedly using commonly available acid and base solutions. Muyskens, Mark. J. Chem. Educ. 2006, 83, 768A.
Fluorescence Spectroscopy |
Natural Products |
Nucleophilic Substitution |
pH |
Solutions / Solvents |
UV-Vis Spectroscopy
|
Popcorn—What's in the Bag? Marissa B. Sherman and Thomas A. Evans Three independent activities explore microwave popcorn, the nature of the packaging, and the popcorn produced. Sherman, Marissa B.; Evans, Thomas A. J. Chem. Educ. 2006, 83, 416A.
Carbohydrates |
Nutrition |
Physical Properties |
Solutions / Solvents |
Water / Water Chemistry
|
Effectiveness of Conceptual Change-Oriented Teaching Strategy To Improve Students' Understanding of Galvanic Cells Ali Riza Özkaya, Musa Üce, Hakan Sariçayir, and Musa Sahin This article presents efforts to develop a conceptual change-oriented strategy to teaching galvanic cells in electrochemistry. The objective is to assess the effectiveness of conceptual change-oriented instruction relative to conventional instruction using statistical comparisons. Özkaya, Ali Riza; Üce, Musa; Sariçayir, Hakan; Sahin, Musa. J. Chem. Educ. 2006, 83, 1719.
Electrochemistry |
Equilibrium |
Oxidation / Reduction |
Undergraduate Research
|
Introduction of Differential Scanning Calorimetry in a General Chemistry Laboratory Course: Determination of Molar Mass by Freezing Point Depression Ronald P. D'Amelia, Thomas Franks, and William F. Nirode The work described herein uses differential scanning calorimetry to determine the molar mass of three unknowns (nonvolatile organic hydrocarbons) by freezing point depression. D'Amelia, Ronald P.; Franks, Thomas; Nirode, William F. J. Chem. Educ. 2006, 83, 1537.
Calorimetry / Thermochemistry |
Instrumental Methods |
Thermal Analysis |
Solutions / Solvents
|
Concentration Scales for Sugar Solutions David W. Ball Examines several special scales used to indicate the concentration of sugar solutions and their application to industry. Ball, David W. J. Chem. Educ. 2006, 83, 1489.
Nomenclature / Units / Symbols |
Food Science |
Solutions / Solvents
|
The Synthesis of Copper(II) Carboxylates Revisited Kevin Kushner, Robert E. Spangler, Ralph A. Salazar, Jr., and J. J. Lagowski Describes an electrochemical synthesis of copper(II) carboxylates for use in the general chemistry laboratory course for chemistry majors. Kushner, Kevin; Spangler, Robert E.; Salazar, Ralph A., Jr.; Lagowski, J. J. J. Chem. Educ. 2006, 83, 1042.
Carboxylic Acids |
Coordination Compounds |
Electrochemistry |
Metals |
Solutions / Solvents |
Transition Elements |
Undergraduate Research |
Synthesis
|
The Fluorescence of Lignum nephriticum: A Flash Back to the Past and a Simple Demonstration of Natural Substance Fluorescence Mark Muyskens This article describes a simple but visually striking demonstration of fluorescence from the aqueous extract of the tropical hardwood Pterocarpus indicus. Muyskens, Mark. J. Chem. Educ. 2006, 83, 765.
Acids / Bases |
Fluorescence Spectroscopy |
Natural Products |
pH |
Solutions / Solvents |
UV-Vis Spectroscopy
|
Demonstration of Absorbance Using Digital Color Image Analysis and Colored Solutions Shane K. Kohl, James D. Landmark, and Douglas F. Stickle This article describes a simple experiment in which the principle of absorbance may be demonstrated using digital color image analysis. Kohl, Shane K.; Landmark, James D.; Stickle, Douglas F. J. Chem. Educ. 2006, 83, 644.
Aqueous Solution Chemistry |
Dyes / Pigments |
Laboratory Computing / Interfacing |
Quantitative Analysis |
Solutions / Solvents |
Spectroscopy |
UV-Vis Spectroscopy
|
What Happens When Chemical Compounds Are Added to Water? An Introduction to the Model–Observe–Reflect–Explain (MORE) Thinking Frame Adam C. Mattox, Barbara A. Reisner, and Dawn Rickey This article describes a laboratory designed to help students understand how different compounds behave when dissolved in water, and introduces the modelobservereflectexplain (MORE) thinking frame, an instructional tool that encourages students to connect macroscopic observations with their understanding of the behavior of particles at the molecular level. Mattox, Adam C.; Reisner, Barbara A.; Rickey, Dawn. J. Chem. Educ. 2006, 83, 622.
Aqueous Solution Chemistry |
Conductivity |
Ionic Bonding |
Solutions / Solvents |
Stoichiometry
|
The Ultrasonic Soda Fountain: A Dramatic Demonstration of Gas Solubility in Aqueous Solutions John E. Baur and Melinda B. Baur An ultrasonic bath is used to accelerate the rate at which carbonated beverages equilibrate with the atmosphere. The resulting fountain, which can reach heights in excess of 3 meters, is a dramatic demonstration of the solubility of gases in liquids. Baur, John E.; Baur, Melinda B. J. Chem. Educ. 2006, 83, 577.
Aqueous Solution Chemistry |
Kinetics |
Physical Properties |
Solutions / Solvents |
Precipitation / Solubility
|
The Reaction Quotent Is Unnecessary To Solve Equilibrium Problems. The Limitation of a Qualitative Reasoning—Editor's Note John W. Moore Discusses the relationship between the concentration of an aqueous solution of acetic acid, its ion concentration, and its equivalent conductance. Moore, John W. J. Chem. Educ. 2006, 83, 384.
Aqueous Solution Chemistry |
Equilibrium |
Conductivity |
Mathematics / Symbolic Mathematics
|
The Reaction Quotent Is Unnecessary To Solve Equilibrium Problems. The Limitation of a Qualitative Reasoning Rob Lederer Discusses the relationship between the concentration of an aqueous solution of acetic acid, its ion concentration, and its equivalent conductance. Lederer, Rob. J. Chem. Educ. 2006, 83, 384.
Aqueous Solution Chemistry |
Equilibrium |
Mathematics / Symbolic Mathematics |
Conductivity
|
The Reaction Quotent Is Unnecessary To Solve Equilibrium Problems. The Limitation of a Qualitative Reasoning Paul Matsumoto Discusses the relationship between the concentration of an aqueous solution of acetic acid, its ion concentration, and its equivalent conductance. Matsumoto, Paul. J. Chem. Educ. 2006, 83, 383.
Equilibrium |
Mathematics / Symbolic Mathematics |
Aqueous Solution Chemistry |
Conductivity
|
The Reaction Quotent Is Unnecessary To Solve Equilibrium Problems. The Limitation of a Qualitative Reasoning Michiel Vogelezang Discusses the relationship between the concentration of an aqueous solution of acetic acid, its ion concentration, and its equivalent conductance. Vogelezang, Michiel. J. Chem. Educ. 2006, 83, 383.
Aqueous Solution Chemistry |
Equilibrium |
Mathematics / Symbolic Mathematics |
Conductivity
|
The Reaction Quotent Is Unnecessary To Solve Equilibrium Problems. The Limitation of a Qualitative Reasoning Michiel Vogelezang Discusses the relationship between the concentration of an aqueous solution of acetic acid, its ion concentration, and its equivalent conductance. Vogelezang, Michiel. J. Chem. Educ. 2006, 83, 383.
Aqueous Solution Chemistry |
Equilibrium |
Mathematics / Symbolic Mathematics |
Conductivity
|
Computer Simulations of Salt Solubility Victor M. S. Gil and João C. M. Paiva Computer Simulations of Salt Solubility provides an animated, visual interpretation of the different solubilities of related salts based on simple entropy changes associated with dissolution: configurational disorder and thermal disorder. Gil, Victor M. S.; Paiva, João C. M. J. Chem. Educ. 2006, 83, 173.
Thermodynamics |
Equilibrium |
Solutions / Solvents |
Precipitation / Solubility |
Computational Chemistry
|
A New Java Animation in Peer-Reviewed JCE WebWare William F. Coleman and Edward W. Fedosky Just added to JCE WebWare, Computer Simulations of Salt Solubility uses a Java applet and Web browser to present an animated illustration of differences in the solubility of salts due to differences in the entropy of solvation. Coleman, William F.; Fedosky, Edward W. J. Chem. Educ. 2006, 83, 173.
Computational Chemistry |
Equilibrium |
Thermodynamics |
Solutions / Solvents |
Precipitation / Solubility
|
Using Computer Simulations To Teach Salt Solubility. The Role of Entropy in Solubility Equilibrium Victor M. S. Gil and João C. M. Paiva Pairs of salts are discussed to illustrate the interpretation of their different behavior in water in terms of the fundamental concept of entropy. The ability of computer simulations to help improve students' understanding of these chemistry concepts is also examined. Gil, Victor M. S.; Paiva, João C. M. J. Chem. Educ. 2006, 83, 170.
Computational Chemistry |
Equilibrium |
Thermodynamics |
Solutions / Solvents |
Precipitation / Solubility
|
Authors: Know the Hazards, Please! Anne K. Bentley, Mohammed Farhoud, Arthur B. Ellis, George C. Lisensky, Anne-Marie L. Nickel, and Wendy C. Crone The MSDS for commercial Ni plating solution states that the product is regulated as toxic and contains ingredients that are known to cause cancer. Bentley, Anne K.; Farhoud, Mohammed; Ellis, Arthur B.; Lisensky, George C.; Nickel, Anne-Marie L.; Crone, Wendy C. J. Chem. Educ. 2005, 82, 1775.
Solutions / Solvents |
Toxicology |
Nanotechnology |
Magnetic Properties
|
Authors: Know the Hazards, Please! Jay A. Young The article Template Synthesis and Magnetic Manipulation of Nickel Nanowires does not identify all of the important potential hazards involved; nickel compounds are known to be human carcinogens, and nickel and its compounds are mutagenic. Young, Jay A. J. Chem. Educ. 2005, 82, 1775.
Solutions / Solvents |
Toxicology |
Nanotechnology |
Magnetic Properties
|
Authors: Know the Hazards, Please! Jay A. Young The article Template Synthesis and Magnetic Manipulation of Nickel Nanowires does not identify all of the important potential hazards involved; nickel compounds are known to be human carcinogens, and nickel and its compounds are mutagenic. Young, Jay A. J. Chem. Educ. 2005, 82, 1775.
Solutions / Solvents |
Toxicology |
Nanotechnology |
Magnetic Properties
|
Laboratory Experiments on the Electrochemical Remediation of the Environment. Part 7: Microscale Production of Ozone Jorge G. Ibanez, Rodrigo Mayen-Mondragon, M. T. Moran-Moran, Alejandro Alatorre-Ordaz, Bruce Mattson, and Scot Eskestrand Ozone, a powerful oxidizing and disinfecting agent, is produced electrochemically in the undergraduate laboratory with simple equipment and under very mild conditions. Tests are given to characterize it, to observe its action in simulated environmental applications, and to measure its rate of production. Ibanez, Jorge G.; Mayen-Mondragon, Rodrigo; Moran-Moran, M. T.; Alatorre-Ordaz, Alejandro; Mattson, Bruce; Eskestrand, Scot. J. Chem. Educ. 2005, 82, 1546.
Aqueous Solution Chemistry |
Descriptive Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Laboratory Equipment / Apparatus |
Microscale Lab |
Oxidation / Reduction |
Reactions
|
Sherlock Holmes and the Case of the Raven and the Ambassador's Wife: An Inquiry-Based Murder Mystery Nathaniel Grove and Stacey Lowery Bretz In the accompanying investigation, students help Sherlock Holmes solve the poisoning death of Holly Bernard-Schneider, the wife of the German ambassador to England. Hints are placed throughout the story to help students in their choice of experiments. These experiments include flame tests, qualitative analysis, molar mass determination using freezing point depression, and identification of crystal shapes. Though intended for use as a culminating activity, the unit can be easily modified to be used as separate modules throughout the course of the year. Grove, Nathaniel; Bretz, Stacey Lowery. J. Chem. Educ. 2005, 82, 1532.
Crystals / Crystallography |
Qualitative Analysis |
Physical Properties |
Solutions / Solvents |
Student-Centered Learning
|
Toys in the Classroom Jerry L. Sarquis and Arlyne. M. (Mickey) Sarquis The chemical principles behind Shrinky Dinks, Happy Birds, and Hand Boilers are described and suggestions for hands-on activities for students are given. Sarquis, Jerry L.; Sarquis, Arlyne. M. (Mickey). J. Chem. Educ. 2005, 82, 1450.
Solutions / Solvents
|
Electropolymerized Conducting Polymer as Actuator and Sensor Device: An Undergraduate Electrochemical Laboratory Experiment María T. Cortés and Juan C. Moreno A trilayer formed by two conducting polymer films sandwiched around an adhesive polymer layer works as actuator and sensor simultaneously. This device can be bent up to 180 and it can be used as a sensing device of physical chemistry parameters such as cell temperature and electrolyte concentration. In this article, it is shown in a didactic way how to electrochemically synthesize ClO4-doped polypyrrole (PPy) films, how to fabricate a trilayer device, and how to evaluate its actuating and sensing capabilities. The required materials are simple and a complicated setup is not necessary. Cortés, María T.; Moreno, Juan C. J. Chem. Educ. 2005, 82, 1372.
Electrochemistry |
Materials Science |
Undergraduate Research |
Polymerization |
Applications of Chemistry
|
Improving Conceptions in Analytical Chemistry: ci Vi = cf Vf Margarita Rodríguez-López and Arnaldo Carrasquillo Jr. A common misconception related to analytical chemistry, which may be generalized as the failure to recognize and to account analytically for changes in substance density, is discussed. A cautionary example is made through the use of mass-based units of composition during volumetric dilution. The correct application of the volumetric dilution equation ci Vi = cf Vf is discussed. A quantitative description of the systematic error introduced by incorrect use of the volumetric dilution equation is also specified. Rodríguez-López, Margarita; Carrasquillo, Arnaldo, Jr. J. Chem. Educ. 2005, 82, 1327.
Industrial Chemistry |
Nomenclature / Units / Symbols |
Quantitative Analysis |
Solutions / Solvents
|
The Origins of Positive and Negative in Electricity William B. Jensen In response to a reader query, the column traces the origins of the terms "positive" and "negative" in electricity. Jensen, William B. J. Chem. Educ. 2005, 82, 988.
Electrochemistry
|
Teaching pH Measurements with a Student-Assembled Combination Quinhydrone Electrode Fritz Scholz, Tim Steinhardt, Heike Kahlert, Jens R. Pörksen, and Jürgen Behnert A combination pH electrode that can be assembled by the student is described. It consists of a glass holder and two sensors in the form of rubber stoppers that contain quinhydrone and graphite. The combination electrode is suitable to teach potentiometric measurements, pH measurements, and the interplay of acidbase and redox equilibria. The electrode meets highest safety standards and overcomes the troubles associated with the use of the conventional quinhydrone electrode. Scholz, Fritz; Steinhardt, Tim; Kahlert, Heike; Pörksen, Jens R.; Behnert, Jürgen. J. Chem. Educ. 2005, 82, 782.
Acids / Bases |
pH |
Laboratory Equipment / Apparatus |
Electrochemistry
|
Procedure for Decomposing a Redox Reaction into Half-Reactions Ilie Fishtik and Ladislav H. Berka The principle of stoichiometric uniqueness provides a simple algorithm to check whether a simple redox reaction may be uniquely decomposed into half-reactions in a single way. For complex redox reactions the approach permits a complete enumeration of a finite and unique number of ways a redox reaction may be decomposed into half-reactions. Several examples are given. Fishtik, Ilie; Berka, Ladislav H. J. Chem. Educ. 2005, 82, 553.
Stoichiometry |
Equilibrium |
Electrochemistry |
Oxidation / Reduction |
Reactions |
Thermodynamics
|
Reaction to "The Concept of Ionic Strength Eighty Years after Its Introduction in Chemistry" Leslie Glasser Sastre de Vicente has recently published an excellent paper on the concept of ionic strength, detailing its empirical origin, its independent appearance in the theories of Debye and Hckel, its applications in solution chemistry and, most importantly, its interpretation as reflecting the extent to which a potential difference induces a charge density difference. Glasser, Leslie. J. Chem. Educ. 2005, 82, 212.
Solutions / Solvents |
Aqueous Solution Chemistry
|
A Greener Approach for Measuring Colligative Properties Sean M. McCarthy and Scott W. Gordon-Wylie As a first step towards the greening of instructional laboratories, we present a new greener version of a laboratory procedure designed to measure colligative properties. The greener procedure substitutes the nontoxic, noncarcinogenic compounds stearic, myristic, lauric, and palmitic acids for the less benign aromatic compounds p-dichlorobenzene, benzil, biphenyl, naphthalene, and nitrotoluene. Achieving educational goals without the concomitant generation of chlorinated and aromatic wastes is shown here to be both possible and practical. McCarthy, Sean M.; Gordon-Wylie, Scott W. J. Chem. Educ. 2005, 82, 116.
Green Chemistry |
Solutions / Solvents |
Fatty Acids
|
The Effect of Ionic Strength on the Solubility of an Electrolyte Joan D. Willey The theory of activity versus concentration is important in industrial, environmental, and biochemistry. The increase in solubility of an electrolyte in a solution of a second electrolyte with no common ions compared with pure water is not an easy concept to grasp because it seems to be counterintuitive. The simple experiment described here illustrates this principle visually and dramatically. Students attempt to dissolve CaSO42H2O (gypsum) in pure water and in 0.25 M NaCl. Willey, Joan D. J. Chem. Educ. 2004, 81, 1644.
Aqueous Solution Chemistry |
Quantitative Analysis |
Water / Water Chemistry |
Solutions / Solvents
|
Using Organic Light-Emitting Electrochemical Thin-Film Devices To Teach Materials Science Hannah Sevian, Sean Müller, Hartmut Rudmann, and Michael F. Rubner Light-emitting thin films provide an excellent opportunity to learn about principles of electrochemistry, spectroscopy, microscopic structure of the solid state, basic circuits, and engineering design. There is currently strong interest in academic and industrial engineering research centering on developing organic light-emitting devices for applications in flat panel displays. In this educational module, designed for high school or introductory undergraduate courses, students learn how to make a ruthenium-based thin-film device. In the process, they learn about the solid-state electrochemistry at work in the film, as well as the electroluminescence that results when current passes through the device. Sevian, Hannah; Müller, Sean; Rudmann, Hartmut; Rubner, Michael F. J. Chem. Educ. 2004, 81, 1620.
Electrochemistry |
Photochemistry |
Materials Science |
Oxidation / Reduction |
Solid State Chemistry
|
A Small-Scale and Low-Cost Apparatus for the Electrolysis of Water Per-Odd Eggen and Lise Kvittingen This article describes how to construct two simple, inexpensive, and illustrative apparatuses using disposable polyethene pipets and floral wire for electrolysis of water. These apparatuses suit various grades and curricula. Eggen, Per-Odd; Kvittingen, Lise. J. Chem. Educ. 2004, 81, 1337.
Laboratory Equipment / Apparatus |
Oxidation / Reduction |
Electrochemistry
|
The Effective Use of an Interactive Software Program To Reduce Students' Misconceptions about Batteries E.-M. Yang, T. J. Greenbowe, and T. Andre In this study, college students enrolled in an introductory chemistry course were asked a series of open-ended questions about electrochemistry, flashlights, and batteries. Misconceptions were identified, analyzed, and used to develop and test an Interactive Software Program (ISP). Yang, E.-M.; Greenbowe, T. J.; Andre, T. J. Chem. Educ. 2004, 81, 587.
Electrochemistry |
Learning Theories |
Electrolytic / Galvanic Cells / Potentials |
Student-Centered Learning
|
Isolation of Copper from a 5–Cent Coin. An Example of Electrorefining Steven G. Sogo The United States 5cent coin, commonly known as a "nickel", is made of an alloy containing 75% copper and 25% nickel. The experiment is a visually appealing illustration of the process of electrorefining using selective reduction. Sogo, Steven G. J. Chem. Educ. 2004, 81, 530.
Electrochemistry |
Oxidation / Reduction |
Metals
|
Well Wishes. A Case on Septic Systems and Well Water Requiring In-Depth Analysis and Including Optional Laboratory Experiments Mary M. Walczak and Juliette M. Lantz This paper describes the use of a case study to teach introductory chemistry students the chemical principles of solution concentration (especially ppm) and dilution, aqueous redox reactions, and stoichiometric conversions between different solution species. Walczak, Mary M.; Lantz, Juliette M. J. Chem. Educ. 2004, 81, 218.
Consumer Chemistry |
Water / Water Chemistry |
Solutions / Solvents |
Oxidation / Reduction |
Stoichiometry
|
The Preparation and Testing of a Common Emulsion and Personal Care Product: Lotion Suzanne T. Mabrouk First-year chemistry students can readily prepare lotion from the emulsification of deionized water, humectant, emulsifier, emollients, thickener, and preservative. Three different lotion formulations are prepared so that students can study the effects of different emulsifiers and emollients on the quality of the final product. The purpose of the ingredients is discussed. Mabrouk, Suzanne T. J. Chem. Educ. 2004, 81, 83.
Colloids |
Conductivity |
Consumer Chemistry |
Industrial Chemistry |
Nonmajor Courses |
Applications of Chemistry
|
Low-Voltage Conductivity Device. Editor's Note about Using Conductivity Devices in Nonaqueous Solutions Ed Vitz and Melissa Kistler A conductivity demonstration device is described which operates on 12V and yet will illuminate a bulb brightly enough for use in a lecture hall, even when used with solutions of low conductivity. Vitz, Ed; Kistler, Melissa. J. Chem. Educ. 2004, 81, 63.
Conductivity |
Laboratory Equipment / Apparatus
|
Three-Dimensional Model for Water: Magnets as Dipoles Samuel H. Yalkowsky and Jennifer L. H. Johnson Reply to comments on original article. Yalkowsky, Samuel H.; Johnson, Jennifer L. H. J. Chem. Educ. 2004, 81, 34.
Aqueous Solution Chemistry |
Noncovalent Interactions |
Hydrogen Bonding |
Lipids |
Liquids |
Molecular Modeling |
Phases / Phase Transitions / Diagrams |
Solutions / Solvents |
Water / Water Chemistry
|
Three-Dimensional Model for Water: Magnets as Chemical Bonds Roy W. Clark Concerns over students confusing electrical and magnetic fields. Clark, Roy W. J. Chem. Educ. 2004, 81, 34.
Aqueous Solution Chemistry |
Noncovalent Interactions |
Hydrogen Bonding |
Lipids |
Liquids |
Molecular Modeling |
Phases / Phase Transitions / Diagrams |
Solutions / Solvents |
Water / Water Chemistry
|
Photogalvanic Cells for Classroom Investigations: A Contribution for Ongoing Curriculum Modernization Claudia Bohrmann-Linde and Michael W. Tausch Laboratory experiments examining the fundamental processes in the conversion of light into electrical energy using photogalvanic cells have been developed. These simple cells are suitable for classroom investigations examining the operating principles of photogalvanic cells and the influence of different parameters on their efficiency. Bohrmann-Linde, Claudia; Tausch, Michael W. J. Chem. Educ. 2003, 80, 1471.
Electrochemistry |
Atomic Properties / Structure |
Photochemistry |
Oxidation / Reduction |
Electrolytic / Galvanic Cells / Potentials
|
Students' Understanding of Solution Chemistry Concepts Tacettin Pinarbasi and Nurtaç Canpolat This study examines undergraduates' understanding of some concepts in solution chemistry such as unsaturated, saturated, and supersaturated solutions; physical properties of solutions; and gas solubility. We suggest that the results can be utilized in research that develops teaching strategies to overcome students' misunderstanding. Pinarbasi, Tacettin; Canpolat, Nurtaç . J. Chem. Educ. 2003, 80, 1328.
Solutions / Solvents |
Aqueous Solution Chemistry |
Precipitation / Solubility
|
Palm-Based Data Acquisition Solutions for the Undergraduate Chemistry Laboratory Susan Hudgins, Yu Qin, Eric Bakker, and Curtis Shannon Handheld computers provide a compact and cost-effective means to log data in the undergraduate chemistry laboratory. Handheld computers have the ability to record multiple forms of data, be programmed for specific projects, and later have data transferred to a personal computer for manipulation and analysis. Hudgins, Susan; Qin, Yu; Bakker, Eric; Shannon, Curtis. J. Chem. Educ. 2003, 80, 1303.
Acids / Bases |
Electrochemistry |
Instrumental Methods |
Laboratory Computing / Interfacing |
Laboratory Equipment / Apparatus
|
Lithium Batteries: A Practical Application of Chemical Principles Richard S. Treptow In recent years batteries have emerged in the marketplace that take advantage of the unique properties of lithium. Lithium metal is an attractive choice to serve as a battery anode because it is easily oxidized and it produces an exceptionally high amount of electrical charge per unit-weight. Treptow, Richard S. J. Chem. Educ. 2003, 80, 1015.
Consumer Chemistry |
Electrochemistry |
Oxidation / Reduction |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
Purple or Colorless—Which Way Up? An Entertaining Solubility Demonstration Trevor M. Kitson Discrepant demonstration involving immiscible mixture of water colored with potassium permanganate and hexane. Kitson, Trevor M. J. Chem. Educ. 2003, 80, 892.
Aqueous Solution Chemistry |
Solutions / Solvents |
UV-Vis Spectroscopy |
Noncovalent Interactions |
Molecular Properties / Structure |
Physical Properties
|
pH Titration Simulator N. Papadopoulos and M. Limniou Windows software that simulates a pH titration. Papadopoulos, N.; Limniou, M. J. Chem. Educ. 2003, 80, 709.
Acids / Bases |
Aqueous Solution Chemistry |
Electrochemistry |
Enrichment / Review Materials
|
Determination of Avogadro's Number by Improved Electroplating Carlos A. Seiglie Electroplating procedure to accurately determine Avogadro's number or Faraday's constant. Seiglie, Carlos A. J. Chem. Educ. 2003, 80, 668.
Electrochemistry |
Metals |
Quantitative Analysis |
Stoichiometry
|
Simple Recipes for Prebiotic Soup: A High School or Undergraduate Chemistry Laboratory Marisol Martinez-Meeler, Nika Aljinovic, and Dorothy Swain Replicating Stanley Miller's prebiotic soup experiment for introductory chemistry; includes experimental apparatus and analysis of the products. Martinez-Meeler, Marisol; Aljinovic, Nika; Swain, Dorothy. J. Chem. Educ. 2003, 80, 665.
Amino Acids |
Aqueous Solution Chemistry |
Chromatography |
Electrochemistry |
Proteins / Peptides |
Synthesis |
Applications of Chemistry
|
A Simple Method for Determination of Solubility in the First-Year Laboratory Heather D. Harle, Julia A. Ingram, Phyllis A. Leber, Kenneth R. Hess, and Claude H. Yoder Efficient means of determining the solubility of a solute using a Buchner-type funnel for filtration and an analytical balance to measure mass changes. Harle, Heather D.; Ingram, Julia A.; Leber, Phyllis A.; Hess, Kenneth R.; Yoder, Claude H. J. Chem. Educ. 2003, 80, 560.
Solutions / Solvents |
Precipitation / Solubility |
Laboratory Management |
Aqueous Solution Chemistry |
Qualitative Analysis |
Gravimetric Analysis
|
Solvent Extraction Using Safe and Commonly Available Materials To Demonstrate the Difference in Solubility of Two Mixed Solutes Dante Gilbert L. de Leon and Armando M. Guidote Jr. Solvent extraction using safe and commonly available materials to demonstrate the difference in solubility of two mixed solutes. de Leon, Dante Gilbert L.; Guidote, Armando M., Jr. J. Chem. Educ. 2003, 80, 436.
Solutions / Solvents |
Separation Science
|
The Chemical Adventures of Sherlock Holmes: The Blackwater Escape Thomas G. Waddell and Thomas R. Rybolt A chemical mystery involving electrochemistry and featuring Sherlock Holmes and Dr. Watson. Waddell, Thomas G.; Rybolt, Thomas R. J. Chem. Educ. 2003, 80, 401.
Electrochemistry |
Materials Science |
Qualitative Analysis |
Oxidation / Reduction |
Enrichment / Review Materials |
Applications of Chemistry
|
Teaching Chemistry Using From the Earth to the Moon James G. Goll and Stacie L. Mundinger Teaching chemistry using From the Earth to the Moon (an HBO original movie series). Goll, James G.; Mundinger, Stacie L. J. Chem. Educ. 2003, 80, 292.
Electrochemistry |
Chemometrics |
Reactions |
Mechanisms of Reactions |
Applications of Chemistry
|
Mole, Mole per Liter, and Molar: A Primer on SI and Related Units for Chemistry Students George Gorin A brief historical overview of the SI system, the concept of the mole and the definition of mole unit, the status of the liter in the metric and SI systems, and the meaning of molar and molarity. Gorin, George. J. Chem. Educ. 2003, 80, 103.
Stoichiometry |
Nomenclature / Units / Symbols |
Solutions / Solvents |
Enrichment / Review Materials
|
Principal Species and pH in Acid–Base Solutions Robert M. Hanson Web page that allows one to determine the concentrations of principal species in a variety of solutions or mixtures of solutions; also allows a virtual titration. Hanson, Robert M. J. Chem. Educ. 2002, 79, 1486.
Acids / Bases |
Aqueous Solution Chemistry |
Solutions / Solvents |
Titration / Volumetric Analysis |
Enrichment / Review Materials
|
A Three-Dimensional Model for Water J. L. H. Johnson and S. H. Yalkowsky Using Molymod spheres and magnets to simulate the structure and properties of water and aqueous systems. Johnson, J. L. H.; Yalkowsky, S. H. J. Chem. Educ. 2002, 79, 1088.
Aqueous Solution Chemistry |
Covalent Bonding |
Lipids |
Liquids |
Solutions / Solvents |
Water / Water Chemistry |
Phases / Phase Transitions / Diagrams
|
A Structure–Activity Investigation of Photosynthetic Electron Transport. An Interdisciplinary Experiment for the First-Year Laboratory Kerry K. Karukstis, Gerald R. Van Hecke, Katherine A. Roth, and Matthew A. Burden Investigation in which students measure the effect of several inhibitors (herbicides) on the electron transfer rate in chloroplasts and formulate a hypothesis between the inhibitor's activity and its structure as a means of using a physical technique to measure a chemical process in a biological system. Karukstis, Kerry K.; Van Hecke, Gerald R.; Roth, Katherine A.; Burden, Matthew A. J. Chem. Educ. 2002, 79, 985.
Biophysical Chemistry |
Electrochemistry |
Noncovalent Interactions |
Molecular Properties / Structure |
UV-Vis Spectroscopy |
Aromatic Compounds |
Plant Chemistry
|
Why Do Some Batteries Last Longer Than Others? Michael J. Smith and Colin A. Vincent Comparing the energy content of the cathode material of different commercial batteries using a test cell. Smith, Michael J.; Vincent, Colin A. J. Chem. Educ. 2002, 79, 851.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
A Direct Methanol Fuel Cell Orfeo Zerbinati Materials and methods for construction of a direct methanol fuel cell. Zerbinati, Orfeo. J. Chem. Educ. 2002, 79, 829.
Electrochemistry |
Laboratory Equipment / Apparatus |
Electrolytic / Galvanic Cells / Potentials
|
Conceptual Difficulties Experienced by Prospective Teachers in Electrochemistry: Half-Cell Potential, Cell Potential, and Chemical and Electrochemical Equilibrium in Galvanic Cells Ali Riza Özkaya Study of prospective teachers' conceptual understanding of topics in electrochemistry. Özkaya, Ali Riza. J. Chem. Educ. 2002, 79, 735.
Electrochemistry |
Equilibrium |
Electrolytic / Galvanic Cells / Potentials
|
A Copper-Sulfate-Based Inorganic Chemistry Laboratory for First-Year University Students That Teaches Basic Operations and Concepts Emilio Rodríguez and Miguel Angel Vicente A 10-hour integrated experiment that covers all the inorganic chemistry topics in first-year chemistry and chemical engineering courses. Rodríguez, Emilio; Vicente, Miguel Angel. J. Chem. Educ. 2002, 79, 486.
Oxidation / Reduction |
Solutions / Solvents
|
Redox Redux: Recommendations for Improving Textbook and IUPAC Definitions Ed Vitz Defining oxidation / reduction reactions as those in which oxidation states of the reactant(s) change. Vitz, Ed. J. Chem. Educ. 2002, 79, 397.
Electrochemistry |
Mechanisms of Reactions |
Oxidation / Reduction |
Oxidation State
|
The Electrolytic Recovery of Copper from Brass. A Laboratory Simulation of an Industrial Application of Electrical Energy Domenico Osella, Mauro Ravera, Cristina Soave, and Sonia Scorza Procedure demonstrating the electrolytic purification of copper. Osella, Domenico; Ravera, Mauro; Soave, Cristina; Scorza, Sonia. J. Chem. Educ. 2002, 79, 343.
Electrochemistry |
Materials Science |
Metals
|
A Chemically Relevant Model for Teaching the Second Law of Thermodynamics Bryce E. Williamson and Tetsuo Morikawa Presentation of a chemically relevant model that exemplifies many aspects of the second law: reversibility, path dependence, and extrapolation in terms of electrochemistry and calorimetry. Williamson, Bryce E.; Morikawa, Tetsuo. J. Chem. Educ. 2002, 79, 339.
Calorimetry / Thermochemistry |
Electrochemistry |
Thermodynamics
|
The Lead-Acid Battery: Its Voltage in Theory and in Practice Richard S. Treptow Lead-acid battery fundamentals, cell voltage and the Nernst equation, and an analysis of actual battery performance. Treptow, Richard S. J. Chem. Educ. 2002, 79, 334.
Electrochemistry |
Oxidation / Reduction |
Thermodynamics |
Electrolytic / Galvanic Cells / Potentials |
Acids / Bases |
Applications of Chemistry
|
Magnetic Stirring with the Stirring Bar Length Exceeding the Vessel Diameter Kirk W. Payne, James M. Lucas, and Edmund J. Eisenbraun Suggestions for effectively using magnetic stirring bars in test tubes. Payne, Kirk W.; Lucas, James M.; Eisenbraun, Edmund J. J. Chem. Educ. 2002, 79, 217.
Laboratory Equipment / Apparatus |
Magnetic Properties |
Solutions / Solvents
|
Just Breathe: The Oxygen Content of Air JCE Editorial Staff Students estimate the percent oxygen (volume) in air using steel wool in a test tube that is inverted in a beaker of water. Oxygen in the trapped air reacts with iron to form rust, and the water level rises inside the test tube; within 30-45 minutes, the majority of oxygen is consumed. JCE Editorial Staff. J. Chem. Educ. 2001, 78, 512A.
Electrochemistry |
Gases |
Oxidation / Reduction
|
Semimetallicity? Stephen J. Hawkes Analysis of whether semimetals are semiconductors and distinctions between metals, semimetals, and nonmetals. Hawkes, Stephen J. J. Chem. Educ. 2001, 78, 1686.
Atomic Properties / Structure |
Metals |
Periodicity / Periodic Table |
Nonmetals |
Physical Properties |
Solid State Chemistry |
Conductivity
|
Acid-Base Indicators: A New Look at an Old Topic Ara S. Kooser, Judith L. Jenkins, and Lawrence E. Welch An acid-base titration in which students choose the best indicator from a set of possibilities using a conductivity probe to help them make an informed choice. Kooser, Ara S.; Jenkins, Judith L.; Welch, Lawrence E. J. Chem. Educ. 2001, 78, 1504.
Acids / Bases |
Conductivity |
Dyes / Pigments |
Laboratory Computing / Interfacing |
Titration / Volumetric Analysis |
Quantitative Analysis
|
Using Computer-Based Visualization Strategies to Improve Students' Understanding of Molecular Polarity and Miscibility Michael J. Sanger and Steven M. Badger II Study of how the use of visualization strategies associated with dynamic computer animations and electron density plots affect students' conceptual understanding of molecular polarity and miscibility. Sanger, Michael J.; Badger, Steven M., II. J. Chem. Educ. 2001, 78, 1412.
Molecular Properties / Structure |
Solutions / Solvents |
Molecular Modeling |
Molecular Mechanics / Dynamics
|
The Purification of Water by Freeze-Thaw or Zone Melting James Oughton, Silas Xu, and Rubin Battino Quantitative investigation of the purification of slat water solutions through the process of partial freezing. Oughton, James; Xu, Silas; Battino, Rubin. J. Chem. Educ. 2001, 78, 1373.
Conductivity |
Phases / Phase Transitions / Diagrams |
Separation Science |
Quantitative Analysis |
Water / Water Chemistry |
Aqueous Solution Chemistry |
Solutions / Solvents
|
On the Importance of Ideality Rubin Battino, Scott E. Wood, and Arthur G. Williamson Analysis of the utility of ideality in gaseous phenomena, solutions, and the thermodynamic concept of reversibility. Battino, Rubin; Wood, Scott E.; Williamson, Arthur G. J. Chem. Educ. 2001, 78, 1364.
Thermodynamics |
Gases |
Solutions / Solvents
|
Melting Point, Density, and Reactivity of Metals Michael Laing Using melting points and densities to the predict the relative reactivities of metals. Laing, Michael. J. Chem. Educ. 2001, 78, 1054.
Descriptive Chemistry |
Metals |
Periodicity / Periodic Table |
Physical Properties |
Reactions |
Thermodynamics |
Calorimetry / Thermochemistry |
Electrochemistry
|
The Conductivity of Molten Materials Monica E. Thomas, Audrey A. Cleveland, Rubin Battino, David A. Dolson, and Michael R. Hall Demonstrating the conductivity of molten ionic compounds; includes apparatus for demonstrating conductivity and suggested list of selected test materials and their melting points. Thomas, Monica E.; Cleveland, Audrey A.; Battino, Rubin; Dolson, David A.; Hall, Michael R. J. Chem. Educ. 2001, 78, 1052.
Conductivity |
Metals |
Ionic Bonding |
Physical Properties
|
Is Every Transparent Liquid Water? Muhamad Hugerat and Sobhi Basheer Comparisons of the properties (polarity, electric conductivity, color change due to the presence of an acid-base indicator, and electrolysis) of three transparent and colorless liquids: water, glycerol, hexane, and ethanol. Hugerat, Muhamad; Basheer, Sobhi. J. Chem. Educ. 2001, 78, 1041.
Acids / Bases |
Electrochemistry |
Oxidation / Reduction |
Conductivity |
Electrophoresis
|
Laboratory Experiments on Electrochemical Remediation of the Environment. Part 5: Indirect H2S Remediation J. G. Ibanez Experiment to introduce students in general chemistry, environmental chemistry, or electrochemistry to the concept of indirect electrolysis, its application in environmental remediation schemes, the role of a mediator, and the application of redox chemistry concepts. Ibanez, J. G. J. Chem. Educ. 2001, 78, 778.
Electrochemistry |
Gases |
Microscale Lab |
Oxidation / Reduction |
Applications of Chemistry
|
Floating Plastics: An Initial Chemistry Laboratory Experience Enrique A. Hughes, Helena M. Ceretti, and Anita Zalts Students prepare a series of solutions with gradually increasing densities. Then they are given plastic samples of known and unknown composition and they estimate the densities of the samples by observing in which solutions they float and in which they sink; these densities are used to identify the plastics. Hughes, Enrique A.; Ceretti, Helena M.; Zalts, Anita. J. Chem. Educ. 2001, 78, 522.
Nonmajor Courses |
Solutions / Solvents |
Physical Properties
|
Structure and Content of Some Primary Batteries Michael J. Smith and Colin A. Vincent An experiment that complements electrochemical characterization and allows students to explore the structure of commercial cells and calculate the anode and cathode capacities from the stoichiometry of the cell reaction. Smith, Michael J.; Vincent, Colin A. J. Chem. Educ. 2001, 78, 519.
Consumer Chemistry |
Electrochemistry |
Undergraduate Research |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
Observations on Lemon Cells Jerry Goodisman The lemon cell, consisting of pieces of two different metals stuck into a lemon or other fruit, is pictured in many general chemistry textbooks without being discussed; manuscript describes simple experiments, suitable for the general chemistry laboratory, which elucidate how this kind of cell works. Goodisman, Jerry. J. Chem. Educ. 2001, 78, 516.
Electrochemistry |
Metals |
Electrolytic / Galvanic Cells / Potentials
|
Are Fizzing Drinks Boiling? A Chemical Insight from Chemical Education Research Alan Goodwin The suggestion that fizzing drinks are examples of liquids boiling at room temperature has proved to be controversial among both chemists and chemical educators. This paper presents a case for believing this everyday system to be a good example of a boiling solution and the consequent separation of carbon dioxide from the solution to exemplify fractional distillation. Goodwin, Alan. J. Chem. Educ. 2001, 78, 385.
Aqueous Solution Chemistry |
Kinetic-Molecular Theory |
Equilibrium |
Gases |
Solutions / Solvents |
Phases / Phase Transitions / Diagrams
|
Electrical Deflection of Polar Liquid Streams: A Misunderstood Demonstration Maryam Ziaei-Moayyed, Edward Goodman, and Peter Williams The electrical deflection of polar liquid streams, commonly used as a textbook illustration of the behavior of polar molecules, is shown to be due to the formation of electrically charged droplets in the polar liquid stream, induced by a nearby charged object, rather than any force exerted on molecular dipoles. Ziaei-Moayyed, Maryam; Goodman, Edward; Williams, Peter. J. Chem. Educ. 2000, 77, 1520.
Electrochemistry
|
Crystallization from a Supersaturated Solution of Sodium Acetate Jamil Ahmad An overhead projector demonstration is described, in which sodium acetate trihydrate crystallizes out from a supersaturated solution that has been poured on a transparency. When seeded with a crystal of the salt, crystallization starts, and its progress can be followed on the screen. Ahmad, Jamil. J. Chem. Educ. 2000, 77, 1446.
Crystals / Crystallography |
Solutions / Solvents
|
SolEq: Solution Equilibria, Principles and Applications, Release 1 by SolEq Project Team: L. D. Pettit, K. J. Powell, and R. W. Ramette Marina C. Koether 29 tutorials with simulation, calculations, and graphs, on solution equilibria. Koether, Marina C. J. Chem. Educ. 2000, 77, 1414.
Equilibrium |
Solutions / Solvents |
Titration / Volumetric Analysis
|
Potentiometric Determination of CO2 Concentration in the Gaseous Phase: Applications in Different Laboratory Activities Eduardo Cortón, Santiago Kocmur, Liliana Haim, and Lydia Galagovsky The first lab comprises the calibration of a CO2 potentiometric detector with gas mixtures. The CO2 and CO2-free air required for the gaseous samples are produced in the lab by an inexpensive and simple apparatus. In the second lab, the CO2 potentiometric device is used to measure CO2 uptake and release during different metabolic processes. Cortón, Eduardo; Kocmur, Santiago; Haim, Liliana; Galagovsky, Lydia. J. Chem. Educ. 2000, 77, 1188.
Electrochemistry |
Gases |
Quantitative Analysis |
Metabolism
|
Turbulent Motion in Ethyl Acetate-Water System Jamil Ahmad 4 mL of ethyl acetate is added to 10 mL of water in a Petri dish. Within a minute or so, an image of turbulent motion appears on the screen, at first at a few centers that eventually organize themselves in a line. The image of the line of turbulence is quite striking and resembles a moving front of dancing flames. Ahmad, Jamil. J. Chem. Educ. 2000, 77, 1182.
Liquids |
Solutions / Solvents |
Surface Science
|
Understanding Electrochemical Thermodynamics through Entropy Analysis Thomas H. Bindel This discovery-based activity involves entropy analysis of galvanic cells. The intent of the activity is for students to discover the fundamentals of electrochemical cells through a combination of entropy analysis, exploration, and guided discovery. Bindel, Thomas H. J. Chem. Educ. 2000, 77, 1031.
Electrochemistry |
Thermodynamics |
Electrolytic / Galvanic Cells / Potentials
|
Experimentation and Group Discussion as a Means of Determining Solubility Rules Karen E. Stevens An experimental method is presented that leads to the development of solubility rules. A set of experiments is performed as a class demonstration and then discussed in groups. As a result, a classification of all the ionic species present can be made in terms of their solubility. Stevens, Karen E. J. Chem. Educ. 2000, 77, 327.
Aqueous Solution Chemistry |
Solutions / Solvents
|
An Introductory Laboratory Exercise on Solution Preparation: A Rewarding Experience M. Rachel Wang This exercise provides beginning students a firsthand experience in solution preparation. The format of the student handout promotes active learning in the laboratory by having text and questions interspersed among laboratory procedures. Students are motivated to prepare solutions for the fascinating Briggs-Rauscher oscillation reaction and the exercise involves a variety of situations commonly encountered in solution preparation. Wang, M. Rachel. J. Chem. Educ. 2000, 77, 249.
Solutions / Solvents
|
Using a Teaching Model to Correct Known Misconceptions in Electrochemistry P. A. Huddle, Margaret Dawn White, and Fiona Rogers A concrete teaching model for electrochemistry is presented here. It addresses many common student misconceptions about current flow by demonstrating what is occurring at the microscopic level in an electrochemical cell. Both the scope and limitations of the model are discussed. Huddle, Penelope Ann; White, Margaret Dawn; Rogers, Fiona. J. Chem. Educ. 2000, 77, 104.
Electrochemistry |
Learning Theories
|
Determination of the Fundamental Electronic Charge via the Electrolysis of Water Brittany Hoffman, Elizabeth Mitchell, Petra Roulhac, Marc Thomes, and Vincent M. Stumpo In an illuminating experiment suitable for secondary school students, a Hoffman electrolysis apparatus is employed to determine the fundamental electronic charge. The volume and pressure of hydrogen gas produced via the electrolysis of water during a given time interval are measured. Hoffman, Brittany; Mitchell, Elizabeth; Roulhac, Petra; Thomes, Marc; Stumpo, Vincent M. J. Chem. Educ. 2000, 77, 95.
Atomic Properties / Structure |
Electrochemistry |
Gases |
Molecular Properties / Structure
|
Viscosity Measurement: A Virtual Experiment: Abstract of Issue 9907 N. Papadopoulos, A. T. Pitta, N. Markopoulos, M. Limniou, M. A. N. D. A. Lemos, F. Lemos, and F. G. Freire Viscosity Measurement includes three virtual experiments: an Ostwald viscometer simulator, a falling-ball viscometer simulator, and a balance simulator for a simple determination of the density of a liquid. Each virtual experiment includes a corresponding theoretical section. Support from the program is sufficient to enable the students to carry out a virtual experiment sensibly and on their own. Papadopoulos, Nikos; Pitta, A. T.; Markopoulos, N.; Limniou, M.; Lemos, M. A. N. D. A.; Lemos, F. M.; Freire, F. G. J. Chem. Educ. 1999, 76, 1600.
Solutions / Solvents |
Physical Properties
|
The Solubility of Ionic Solids and Molecular Liquids C. Baer and Sheila M. Adamus The solubilities of three ionic salts (NaCl, PbCl2, and KAl(SO4)2.12H2O) in water are measured at four temperatures. The concept of recrystallization is introduced as students cool a high-temperature solution and observe crystal formation. Spreadsheet calculations are performed with the group data, which are then graphed, and students observe the wide variance in solubility behavior for the three salts. Baer, Carl; Adamus, Sheila M. J. Chem. Educ. 1999, 76, 1540.
Noncovalent Interactions |
Laboratory Computing / Interfacing |
Liquids |
Molecular Properties / Structure |
Solutions / Solvents
|
A Simple Experiment for Ion Migration Karl E. Bessler and Daniel de Oliveira Campos A simple, versatile, and low-cost version of a qualitative ion migration experiment is presented, which needs a minimum amount of chemicals and can be performed by inexperienced students. In the experiment cations and anions (preferably colorless or faintly colored) migrate toward one another and on combination produce insoluble and strongly colored compounds. Bessler, Karl E.; Campos, Daniel de O. J. Chem. Educ. 1999, 76, 1516.
Aqueous Solution Chemistry |
Electrochemistry |
Qualitative Analysis |
Electrophoresis
|
Phosphate Buffers and Telephone Poles - A Useful Analogy with Limitations Edwin S. Gould A visual aid is presented to help general chemistry students establish the major phosphorus species in buffer solutions made from partial neutralizations of phosphoric acid and to estimate concentrations. Gould, Edwin S. J. Chem. Educ. 1999, 76, 1511.
Aqueous Solution Chemistry |
Solutions / Solvents |
Acids / Bases
|
Henry's Law and Noisy Knuckles Doris R. Kimbrough Presented here is the application of Henry's law to the noise associated with "cracking" knuckles. Gases dissolved in the synovial fluid in joints rapidly come out of solution as the joint is stretched and pressure is decreased. This "cavitation" produces a characteristic noise. Kimbrough, Doris R. J. Chem. Educ. 1999, 76, 1509.
Gases |
Solutions / Solvents |
Applications of Chemistry |
Medicinal Chemistry
|
Chemistry Comes Alive! Vol. 3: Abstract of Special Issue 23 on CD-ROM Jerrold J. Jacobsen and John W. Moore Volume 3 contains several related topics generally included in an introductory chemistry course. The general areas are Enthalpy and Thermodynamics, Oxidation-Reduction, and Electrochemistry. Jacobsen, Jerrold J.; Moore, John W. J. Chem. Educ. 1999, 76, 1311.
Calorimetry / Thermochemistry |
Thermodynamics |
Oxidation / Reduction |
Electrochemistry
|
Authentic Research within the Grasp of High School Students Annis Hapkiewicz There are research questions to be explored that are within the experience of students. The research problem that is described arose when a colleague posed a question: "Will an ice cube melt faster in salt water or tap water?" The learning process describe could be duplicated in any chemistry classroom, and it can also serve as a framework for exploring other problems as they arise from everyday observations. Hapkiewicz, Annis. J. Chem. Educ. 1999, 76, 1212.
Solutions / Solvents
|
Lemon Cells Revisited Radhakrishnamurty, P. Analysis of the reactions and nature of the electrodes in the lemon cell. Radhakrishnamurty, P. J. Chem. Educ. 1999, 76, 1190.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Oxidation / Reduction
|
Ammonia Can Crush Ed Vitz When a 12-oz aluminum soft drink can filled with ammonia or hydrogen chloride gas is inverted and dipped into water, the rapidly dissolving gas evacuates the can and the can is crushed before water can be drawn into it. This demonstrates, among other things, the remarkable strength of hydrogen bonds. Vitz, Ed. J. Chem. Educ. 1999, 76, 932.
Noncovalent Interactions |
Gases |
Solutions / Solvents |
Hydrogen Bonding
|
An Analysis of College Chemistry Textbooks As Sources of Misconceptions and Errors in Electrochemistry Michael J. Sanger and Thomas J. Greenbowe The oxidation-reduction and electrochemistry chapters of 10 introductory college chemistry textbooks were reviewed for misleading or erroneous statements, using a list of student misconceptions. As a result of this analysis, we provide suggestions for chemistry instructors and textbook authors. Sanger, Michael J.; Greenbowe, Thomas J. J. Chem. Educ. 1999, 76, 853.
Electrochemistry |
Oxidation / Reduction |
Learning Theories
|
Solution Conductivity Apparatus Daniel T. Haworth, Mark R. Bartelt, and Michael J. Kenney A solution conductivity apparatus is described that can be used to measure the relative conductivity of various solutions. The apparatus can be used as either a hand-held model employing a 10-element LED display or a lecture-hall demonstration model employing a 10-incandescent-lamp array. Haworth, Daniel T.; Bartelt, Mark R.; Kenney, Michael J. J. Chem. Educ. 1999, 76, 625.
Laboratory Equipment / Apparatus |
Conductivity |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Student Construction of a Gel-Filled Ag/AgCl Reference Electrode for Use in a Potentiometric Titration James M. Thomas Instructions for the preparation of a Ag/AgCl "reference"-type electrode that uses a gel-type matrix are given. In addition, construction steps are provided for a very sturdy Pt-nichrome "inert" electrode, which can be used many times. Together, these two electrodes, along with a multivoltmeter, have been used successfully to determine the percent of iron in Fe(NH4)2(SO4)2 and in Fe2O2 unknowns purchased commercially. Thomas, James M. J. Chem. Educ. 1999, 76, 97.
Instrumental Methods |
Electrochemistry |
Quantitative Analysis |
Oxidation / Reduction |
Laboratory Equipment / Apparatus |
Titration / Volumetric Analysis
|
The Nernst Equation: Determination of Equilibrium Constants for Complex Ions of Silver Martin L. Thompson and Laura J. Kateley The experiment requires a voltmeter capable of recording millivolts (or a good pH meter) and inexpensive chemicals. It allows students to check the validity of the Nernst equation and compare their experimental Kform values to reported ones. Thompson, Martin L.; Kateley, Laura J. J. Chem. Educ. 1999, 76, 95.
Equilibrium |
Coordination Compounds |
Electrochemistry |
Oxidation / Reduction
|
Developing and Using Conceptual Computer Animations for Chemistry Instruction K. A. Burke, Thomas J. Greenbowe, and Mark A. Windschitl This paper discusses several issues surrounding the development and use of instructional conceptual computer animations. Burke, K. A.; Greenbowe, Thomas J.; Windschitl, Mark A. J. Chem. Educ. 1998, 75, 1658.
Electrochemistry |
Learning Theories
|
The Effects of Salts and Nonelectrolytes on the Solubility of Potassium Bitartrate: An Introductory Chemistry Discovery Experiment Charles J. Marzzacco An introductory chemistry discovery experiment on the effect of the presence of various solutes on the solubility of potassium bitartrate (KHT) is presented. Aqueous solutions of KCl, NaCl, MgSO4 and glucose with concentrations ranging from 0.0 to 0.10 M are saturated with KHT. The solubility of the KHT in these various solutions is determined by titration with standardized NaOH solution. Marzzacco, Charles J. J. Chem. Educ. 1998, 75, 1628.
Solutions / Solvents |
Equilibrium |
Quantitative Analysis
|
A Cyclist's Guide to Ionic Concentration Arthur M. Last A simple analogy to help students understand ionic concentration is presented. Last, Arthur M. J. Chem. Educ. 1998, 75, 1433.
Solutions / Solvents |
Stoichiometry
|
Chromatographic Separation Techniques for Undergraduates Darwin B. Dahl, John T. Riley, and Thomas K. Green Over the past several years the Chemistry Department at Western Kentucky University (WKU) has sought to strengthen its undergraduate program departmental through acquisition of FT-NMR, fluorescence, electrochemical, thermal analysis, laser Raman, microscale organic, and polymer laboratory instrumentation; this has enabled the department to build a successful undergraduate program. Dahl, Darwin B.; Riley, John T.; Green, Thomas K. J. Chem. Educ. 1998, 75, 1209.
Separation Science |
Chromatography |
Fourier Transform Techniques |
NMR Spectroscopy |
Raman Spectroscopy |
Electrochemistry |
Photochemistry |
Thermal Analysis |
Microscale Lab
|
What Should We Teach Beginners about Solubility and Solubility Products? Stephen J. Hawkes Solubility equilibria are best taught qualitatively in introductory chemistry, leaving the calculations to higher level courses. Hawkes, Stephen J. J. Chem. Educ. 1998, 75, 1179.
Solutions / Solvents |
Equilibrium |
Precipitation / Solubility
|
Automatic Titrators in the Analytical and Physical Chemistry Laboratories Kathryn R. Williams In 1995 the University of Florida received an NSF-ILI grant to purchase six automatic titrators, which have now been successfully integrated into the analytical and physical chemistry teaching laboratories. After they have mastered fundamental techniques, students in the introductory analytical laboratory gain experience with automated analyses in three experiments: the iodimetric analysis of ascorbic acid, the determination of polymer molecular weight, and the analysis of chloride by ion selective electrode. Williams, Kathryn R. J. Chem. Educ. 1998, 75, 1133.
Electrochemistry |
Laboratory Equipment / Apparatus |
Titration / Volumetric Analysis
|
Integrating Computers into the First-Year Chemistry Laboratory: Application of Raoult's Law to a Two-Component System R. Viswanathan and G. Horowitz First-year chemistry students are introduced to a spreadsheet program to calculate the boiling points of a two-component solution containing a volatile solute. The boiling points are predicted by combining the Clausius-Clapeyron equation and Raoult's law. A simple experimental setup is used to measure the boiling points of solutions of varying compositions. Viswanathan, Raji; Horowitz, Gail. J. Chem. Educ. 1998, 75, 1124.
Laboratory Computing / Interfacing |
Physical Properties |
Solutions / Solvents |
Phases / Phase Transitions / Diagrams
|
Oxygen vs Dioxygen: Diatomic/Monatomic Usage Sharon, Jared B. Using the name dioxygen for O2. Sharon, Jared B. J. Chem. Educ. 1998, 75, 1089.
Nomenclature / Units / Symbols |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Vapor Pressure Lowering by Nonvolatile Solutes Gavin D. Peckham This short article highlights a fundamental error that is entrenched in introductory chemistry textbooks. It is true that the addition of a nonvolatile solute causes a lowering in the vapor pressure of a solution. The error lies in attributing this vapor pressure lowering to the "blocking" of surface sites by nonvolatile particles. This is a totally fallacious argument for a number of reasons and the true explanation is to be found in the entropy changes that occur as a nonvolatile solute is added to a solution. Peckham, Gavin D. J. Chem. Educ. 1998, 75, 787.
Gases |
Solutions / Solvents |
Thermodynamics
|
Demonstrating Electron Transfer and Nanotechnology: A Natural Dye-Sensitized Nanocrystalline Energy Converter Greg P. Smestad and Michael Gratzel A unique solar cell fabrication procedure has been developed using natural anthocyanin dyes extracted from berries. It can be reproduced with a minimum amount of resources in order to provide an interdisciplinary approach for lower-division undergraduate students learning the basic principles of biological extraction, physical chemistry, and spectroscopy as well as environmental science and electron transfer. Smestad, Greg P.; Grtzel, Michael. J. Chem. Educ. 1998, 75, 752.
Photochemistry |
Plant Chemistry |
Electrochemistry |
Atomic Properties / Structure |
Dyes / Pigments |
Nanotechnology |
Separation Science |
Spectroscopy
|
Sugar Dehydration without Sulfuric Acid: No More Choking Fumes in the Classroom! Todd P. Silverstein and Yi Zhang Our demonstration uses no sulfuric acid, yields relatively little smoke, and produces an exciting and unpredictable growing column of black carbon. Silverstein, Todd P.; Zhang, Yi. J. Chem. Educ. 1998, 75, 748.
Carbohydrates |
Thermodynamics |
Electrochemistry |
Solid State Chemistry |
Oxidation / Reduction
|
Slide Projector Corrosion Cell Silvia Tejada, Estela Guevara, and Esperanza Olivares The process of corrosion can be demonstrated in a slide projector, since the cell is in the shape of a slide, or on the stage of an overhead projector by setting up a simple galvanic cell. Corrosion occurs as the result of a galvanic cell reaction, in which the corroding metal acts as the anode. Several simple demonstrations relating to corrosion are described here. Tejada, Silvia; Guevara, Estela; Olivares, Esperanza. J. Chem. Educ. 1998, 75, 747.
Electrochemistry |
Microscale Lab |
Oxidation / Reduction |
Reactions |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
A Closer Look at the Addition of Equations and Reactions Damon Diemente Chemists occasionally find it convenient or even necessary to express an overall reaction as the sum of two or more component reactions. A close examination, however, reveals that the resemblance between chemical algebraic equations is entirely superficial, and that the real meaning of addition in chemical equations is subtle and varies from case to case. In high-school courses, students are likely to encounter the addition of equations in thermochemistry, in electrochemistry, and in kinetics. Diemente, Damon. J. Chem. Educ. 1998, 75, 319.
Calorimetry / Thermochemistry |
Electrochemistry |
Mechanisms of Reactions |
Stoichiometry |
Reactions
|
Lemon Cells Revisited - The Lemon-Powered Calculator Daniel J. Swartling and Charlotte Morgan Using lemons to create a voltaic cell to run items that students would use in their everyday lives drives home that chemistry plays an integral role in their lives. Swartling, Daniel J.; Morgan, Charlotte. J. Chem. Educ. 1998, 75, 181.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
The Real Reason Why Oil and Water Don't Mix Todd P. Silverstein Authors should remove from their textbooks the incorrect enthalpic/hydrogen-bond explanation for the hydrophobic effect. Because aspects of the correct entropic/clathrate "cage" explanation lie beyond the scope of introductory or organic chemistry courses, it may be wisest to omit any detailed physical explanation of the "like dissolves like" phenomenon. Silverstein, Todd P. J. Chem. Educ. 1998, 75, 116.
Theoretical Chemistry |
Water / Water Chemistry |
Aqueous Solution Chemistry |
Solutions / Solvents
|
The Source of the Cloud Produced upon Adding Dry Ice to Water Manu Kohli, Rudy L. Luck, and Veka Ohtamaa Explains why a cloud is produced by adding dry ice to water. Kohli, Manu; Luck, Rudy L.; Ohtamaa, Veka. J. Chem. Educ. 1998, 75, 60.
Solutions / Solvents |
Water / Water Chemistry
|
Demonstrating Heat Changes on the Overhead Projector with a Projecting Thermometer Chinhyu Hur, Sally Solomon, and Christy Wetzel Heat changes can be observed by using a culture dish and a thermometer that is projected onto a screen using an overhead projector. Hur, Chinhyu; Solomon, Sally; Wetzel, Christy. J. Chem. Educ. 1998, 75, 51.
Calorimetry / Thermochemistry |
Solutions / Solvents |
Thermodynamics |
Laboratory Equipment / Apparatus
|
The Electromotive Series and Other Non-Absolute Scales Gavin D. Peckham Stresses the reference-state approach for students learning the electromotive series and other non-absolute scales. Peckham, Gavin D. J. Chem. Educ. 1998, 75, 49.
Electrochemistry
|
The Disappearing Liquid H. D. Gesser and Ian Ward Mixing ethanol and water in a volumetric flask results in a noticeable reduction in the volume of the mixture. Gesser, H. D.; Ward, Ian. J. Chem. Educ. 1997, 74, 1357.
Liquids |
Solutions / Solvents |
Atomic Properties / Structure
|
ACS National Historic Chemical Landmark: Charles Martin Hall's Discovery of the Electrochemical Process for Aluminum Norman C. Craig Oberlin College and the Cleveland Section of the American Chemical Society hosted a celebration in which Charles Martin Hall's discovery of the electrochemical process for extracting aluminum metal from the ore was designated as a National Historic Chemical Landmark by the ACS. Craig, Norman C. J. Chem. Educ. 1997, 74, 1269.
Electrochemistry
|
The reply: Ionization Constants S. Roo, L. Vermeire, and C. Gorller-Walrand Error regarding the first ionization constant of carbonic acid. Roo, S.; Vermeire, L.; Gorller-Walrand, C. J. Chem. Educ. 1997, 74, 1160.
Equilibrium |
Solutions / Solvents |
Aqueous Solution Chemistry |
Acids / Bases |
Mathematics / Symbolic Mathematics
|
Ionization Constants Morris Bader Error regarding the first ionization constant of carbonic acid. Bader, Morris. J. Chem. Educ. 1997, 74, 1160.
Equilibrium |
Solutions / Solvents |
Aqueous Solution Chemistry |
Acids / Bases
|
Constructing Chemical Concepts through a Study of Metals and Metal Ions: Guided Inquiry Experiments for General Chemistry Ram S. Lamba, Shiva Sharma, and Baird W. Lloyd A set of inquiry-based experiments designed to help students develop an understanding of basic chemical concepts within the framework of studying the properties and reactivity of metals and metal ions. Lamba, Ram S.; Sharma, Shiva; Lloyd, Baird W. J. Chem. Educ. 1997, 74, 1095.
Electrochemistry |
Metals |
Oxidation / Reduction |
Stoichiometry
|
A Simple Laboratory Demonstration of Electrochromism Bertil Forslund A laboratory exercise in which students are asked to construct an electrochromic cell, consisting of a thin, transparent layer of WO3 on a glass plate with a thin, transparent, and conducting surface coating of doped SnO2. Forslund, Bertil. J. Chem. Educ. 1997, 74, 962.
Electrochemistry |
Materials Science |
Solid State Chemistry
|
Removing Silicone Grease from Glassware Thomas H. Lowry A recent note described the use of 5% aqueous hydrofluoric acid for removing silicone grease residues from round-bottom flasks. A safer and more convenient alternative is a saturated solution of sodium hydroxide in ethanol. Lowry, Thomas H. J. Chem. Educ. 1997, 74, 841.
Laboratory Equipment / Apparatus |
Solutions / Solvents |
Laboratory Management
|
Students' Misconceptions in Electrochemistry Regarding Current Flow in Electrolyte Solutions and the Salt Bridge Michael J. Sanger and Thomas J. Greenbowe Several researchers have documented students' misconceptions in electrochemistry. One reason for the interest in studying electrochemistry is that surveys of students and teachers suggest that students find this topic difficult and research confirms that students' beliefs about problem complexity affect their performance and learning. Sanger, Michael J.; Greenbowe, Thomas J. J. Chem. Educ. 1997, 74, 819.
Learning Theories |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry
|
Chemistry for the Visually Impaired Judy L. Ratliff Methods used to try to provide a valuable experience for visually impaired students in a general education or an introductory chemistry class are discussed. Modifications that can be made cheaply and with little time commitment which will allow visually impaired students to participate productively in the laboratory are examined. Ratliff, Judy L. J. Chem. Educ. 1997, 74, 710.
Laboratory Equipment / Apparatus |
Nonmajor Courses |
Minorities in Chemistry |
Conductivity |
Laboratory Equipment / Apparatus
|
Stable Solutions for the Iodine Clock Reaction George B. Kauffman and Charles R. Hall Advanced preparation of solutions for the iodine clock reaction. Kauffman, George B.; Hall, Charles R. J. Chem. Educ. 1997, 74, 616.
Reactions |
Solutions / Solvents
|
A Low-Cost and High-Performance Conductivity Meter Rogerio T. da Rocha, Ivano G. R. Gutz, and Claudimir L. do Lago A two-electrode conductivimeter is described, which keep good performance in spite of its low cost. da Rocha, Rogerio T. ; Gutz, Ivano G.R. ; do Lago, Claudimir L. J. Chem. Educ. 1997, 74, 572.
Instrumental Methods |
Conductivity |
Electrochemistry |
Laboratory Equipment / Apparatus
|
A Quantitative Conductance Apparatus Danny Burns and Don Lewis Circuitry, electrode configuration and calibration procedures are described for a conductance device. An alternative construction of the circuit is given allowing computer capture of the instrument response. Burns, Danny; Lewis, Don. J. Chem. Educ. 1997, 74, 570.
Instrumental Methods |
Conductivity |
Liquids |
Solutions / Solvents |
Laboratory Equipment / Apparatus
|
An Apparatus for Fast Dilution V. P. Boiko An apparatus for fast dilution permitting unlimited dilution of the solution in the same vessel is described. This was achieved by using a siphon to remove part of the solution from the dilution vessel. Boiko, V. P. J. Chem. Educ. 1997, 74, 439.
Laboratory Equipment / Apparatus |
Solutions / Solvents
|
Synthesis and Characterization of a Conduction Polymer: An Electrochemical Experiment for General Chemistry Roger K. Bunting, Karsten Swarat, DaJing Yan, Duane Finello The electrochemical synthesis of a free-standing film of polypyrrole, using commonly available equipment and materials, is described at a level suitable to application in a general chemistry laboratory. Also described are methods to quantitatively assess the doping level and to characterize the polymer film in terms of its conductivity as a function of temperature. Bunting, Roger K.; Swarat, Karsten; Yan, DaJing; Finello, Duane. J. Chem. Educ. 1997, 74, 421.
Electrochemistry |
Conductivity
|
A Simple Audio Conductivity Device Gregory Berenato and David F. Maynard Many instruments either lack the sensitivity needed to measure small differences in conductivity or require expensive meters. To solve these problems, the authors have built a simple audio conductivity device that is very sensitive to current flow. Berenato, Gregory; Maynard, David F. J. Chem. Educ. 1997, 74, 415.
Laboratory Equipment / Apparatus |
Conductivity
|
The Safe and Efficient Evaporation of a Solvent from Solution Andrew R. Mahon By inverting an ordinary 200-mL vacuum flask and pulling a steady current of air from the vacuum apparatus through it, any type of small container can be placed under it, allowing the solvent to be evaporated in a steady, mistake-free manner . Mahon, Andrew R. J. Chem. Educ. 1997, 74, 246.
Solutions / Solvents |
Laboratory Equipment / Apparatus |
Laboratory Management
|
Small Scale Electrolytic Cells Anderson, Guy E. A method is given for a quantitative electrolysis experiment that does not require specialized equipment. Anderson, Guy E. J. Chem. Educ. 1996, 73, A172.
Electrolytic / Galvanic Cells / Potentials |
Microscale Lab |
Quantitative Analysis |
Electrochemistry
|
Electrode Processes and Aspects Relating to Cell EMF, Current, and Cell Components in Operating Electrochemical Cells: Precollege and College Student Interpretation N. A. Ogude and J. D. Bradleu Four areas that present difficulty among high school pupils and tertiary level students in relation to the processes that take place in operating electrochemical cells were identified, including conduction in the electrolyte, electrical neutrality, electrode processes and terminology, and aspects relating to cell emf, current, and cell components. A 20-item questionnaire was designed to determine how widespread misconceptions in these areas were. Ogude, N. A.; Bradley, J. D. J. Chem. Educ. 1996, 73, 1145.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
The Chemical and Educational Appeal of the Orange Juice Clock Paul B. Kelter, James D. Carr, Tanya Johnson, and Carlos Mauricio Castro-Acuña The Orange Juice Clock, in which a galvanic cell is made from the combination of a magnesium strip, a copper strip, and juice in a beaker, has been a popular classroom, conference, and workshop demonstration for nearly 10 years. The discussion that follows considers the recent history, chemistry, and educational uses of the demonstration. Kelter, Paul B.; Carr, James D.; Johnson, Tanya; Castro-Acuña, Carlos Mauricio. J. Chem. Educ. 1996, 73, 1123.
Electrochemistry
|
Effects of Solution Physical Properties on Copper and Chromium Signals in Flame Atomic Absorption Spectrometry Fàbio R. P. Rocha, Joaquim A. Nòbrega Instrumental techniques, such as flame atomic absorption spectrometry (FAAS), are frequently used in chemical analysis. Independently of the technique used, the chemical principles must be considered to assure that the analytical results are correct. Rocha, Fàbio R. P.; Nòbrega , Joaquim A. J. Chem. Educ. 1996, 73, 982.
Physical Properties |
Atomic Spectroscopy |
Qualitative Analysis |
Solutions / Solvents |
Instrumental Methods
|
A Simple Method for Determining the Temperature Coefficient of Voltaic Cell Voltage Alfred E. Saieed, Keith M. Davies This article describes a relatively simple method for preparing voltaic cells, and through their temperature coefficient, ?E/?T, it explores relationships between ?G, ?H,and ?S for the cell reactions involved. Saieed, Alfred E.; Davies, Keith M. J. Chem. Educ. 1996, 73, 959.
Electrochemistry |
Calorimetry / Thermochemistry |
Thermodynamics |
Electrolytic / Galvanic Cells / Potentials |
Laboratory Equipment / Apparatus |
Laboratory Management |
Oxidation / Reduction
|
Home-Study Microlabs Dietmar Kennepohl This article presents the use of microscaled chemistry experiments for individual home study and how it can be incorporated into a course with traditional laboratory work. Kennepohl, Dietmar. J. Chem. Educ. 1996, 73, 938.
Microscale Lab |
Solutions / Solvents |
Calorimetry / Thermochemistry |
Qualitative Analysis |
Precipitation / Solubility
|
The Comparative Performance of Batteries: The Lead-Acid and the Aluminum-Air Cells Xavier LeRoux, Gerry A. Ottewill, and Frank C. Walsh An experimental program designed to convey, to students aged 16 through undergraduate, the principles of battery electrochemistry through a comparative study of two different systems, the lead acid cell and aluminum air cell, is described. LeRoux, Xavier; Ottewill, Gerry A.; Walsh, Frank C. J. Chem. Educ. 1996, 73, 811.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
Low-Cost Lateral Displacement Refractometer for Liquids: A Take-Home Student Experiment V. Anantha Narayanan and Radha Narayanan This article describes an experiment that uses a low-cost lateral displacement refractometer. The refractometer can be used in the home or laboratory by science students. Narayanan, V. Anantha; Narayanan, Radha. J. Chem. Educ. 1996, 73, 784.
Solutions / Solvents |
Laboratory Equipment / Apparatus
|
Demonstration of the Plasma State Joachim P. Schreckenbach and Klaus Rabending Important basic properties of the plasma state are recognized in a simple experimental arrangement described in this article. Schreckenbach, Joachim P.; Rabending, Klaus. J. Chem. Educ. 1996, 73, 782.
Phases / Phase Transitions / Diagrams |
Conductivity |
Electrolytic / Galvanic Cells / Potentials
|
Using Physics Principles in the Teaching of Chemistry Warren Gulden Chemistry and physics may be separate subjects, but that should not prohibit the use of physics in a chemistry course. When this is done, students can use traditional physics principles or laws for the purpose of understanding chemistry better. Gulden, Warren. J. Chem. Educ. 1996, 73, 771.
Ionic Bonding |
Physical Properties |
Electrochemistry |
Hydrogen Bonding
|
Teaching Dilutions Lloyd J. McElroy Teaching the concepts of dilutions is facilitated by using the graphic presentations depicted in this article along with the conventional formulas. McElroy, Lloyd J. J. Chem. Educ. 1996, 73, 765.
Solutions / Solvents
|
Interactive Computer Visualization in the Introductory Chemistry Curriculum Victoria M. Bragin This project explores the use of technological innovations to facilitate learning in introductory chemistry courses by those with a poor academic background, while also challenging those prepared to master the curriculum. Bragin, Victoria M. J. Chem. Educ. 1996, 73, 747.
Gases |
Rate Law |
Kinetic-Molecular Theory |
Titration / Volumetric Analysis |
Periodicity / Periodic Table |
Electrochemistry
|
SIRS: Simulations and Interactive Resources, III Martin, John S. Simulations and Interactive Resources (SIRs) are designed to support interactive lectures in introductory chemistry. This third issue of SIRs includes five new SIRs as well as updated and final versions of all previously published SIRs. Martin, John S. J. Chem. Educ. 1996, 73, 722.
Periodicity / Periodic Table |
Equilibrium |
Gases |
Thermodynamics |
Reactions |
Electrochemistry |
Kinetics
|
Constant-Current Coulometric Titration of Hydrochloric Acid James Swim, Edward Earps, Laura M. Reed, and David Paul In this experiment we have combined the titration of a strong acid with a strong base and the electrolysis of water into one complete laboratory experience. James Swim, Edward Earps, Laura M. Reed, and David Paul. J. Chem. Educ. 1996, 73, 679.
Titration / Volumetric Analysis |
Acids / Bases |
Water / Water Chemistry |
Electrochemistry |
Oxidation / Reduction
|
Determination of Polychlorinated Biphenyls (PCBs) in River and Bay Sediments: An Undergraduate Laboratory Experiment in Environmental Chemistry Using Capillary Gas Chromatography with Electron Capture Detection Susan E. Kegley, Kristen J. Hansen, and Kevin L. Cunningham This paper briefly discusses the history of PCB use and provides guidelines for finding and evaluating PCB-contaminated sites as a way to interest students by showing them an application of chemistry to the "real world." Kegley, Susan E.; Hansen, Kristen J.; Cunningham, Kevin L. J. Chem. Educ. 1996, 73, 558.
Water / Water Chemistry |
Gas Chromatography |
Applications of Chemistry |
Separation Science |
Solutions / Solvents
|
All Positive Ions Give Acid Solutions in Water Stephen J. Hawkes The acidity of aqueous solutions of positive ions is never zero although many texts say incorrectly that most metals of Groups I and II and some others are not acidic. Hawkes, Stephen J. J. Chem. Educ. 1996, 73, 516.
Acids / Bases |
Metals |
Solutions / Solvents |
pH
|
Laser Pointer and the Tyndall Effect Eugene Thomas Laser pointers provide a convenient way to demonstrate the Tyndall effect to beginning students. Thomas, Eugene. J. Chem. Educ. 1996, 73, 470.
Lasers |
Solutions / Solvents
|
Glowing Veggies Pirketta Scharlin, Audrey A. Cleveland, Rubin Battino, Monica E. Thomas, and Arnold George In this paper we extend our work to other vegetables and the spectra generated by other elements than the sodium in pickle brines. We also did a study on the effect of concentration and voltage on glow intensity. Scharlin, Pirketta; Cleveland, Audrey A.; Battino, Rubin; Thomas, Monica E. J. Chem. Educ. 1996, 73, 457.
Conductivity |
Food Science |
Atomic Properties / Structure
|
The Incredible "Glowing" Pickle and Onion and Potato and... Rubin Battino and Peter M. Weimer There are many demonstrations about electrical conductivity that are illuminating, but the incredible glowing pickle is the most dramatic and eye-catching. In this paper we describe how to achieve the same effect with an onion, a potato, a head of cabbage, and a grapefruit, as well as a simple and safe device to hold these foods. Weimer, Peter M.; Battino, Rubin. J. Chem. Educ. 1996, 73, 456.
Food Science |
Electrochemistry |
Laboratory Equipment / Apparatus
|
Which E^o Is It? The Story of a Student Discovery Ron C. Cooke and Grover C. Willis A homework problem called for the computation of the E^o for the reaction 2Cu+ --> Cu+2 + Cu. Two students independently worked on this problem and calculated answers of +0.359 V and +0.181 V respectively, using E^o for the half reactions from a table in the book. Cooke, Ron C.; Willis, Grover C. J. Chem. Educ. 1996, 73, 450.
Electrochemistry
|
The Teaching of Precipitation Equilibrium: A New Approach Ana M. V. S. V. Cavaleiro In this paper we present a simplified integrated approach to the calculation of the solubility in water of a salt, and the pH of the saturated solution, taking into account the acid-base reactions of the anion. Cavaleiro, Ana M. V. S. V. J. Chem. Educ. 1996, 73, 423.
Precipitation / Solubility |
pH |
Solutions / Solvents |
Acids / Bases
|
Salts are Mostly Not Ionized Stephen J. Hawkes The popular assumption that all salts are totally ionized in aqueous solution is false. Moreover, it is approximated only by alkali metal salts and by salts of alkaline earth metals with high atomic numbers. Hawkes, Stephen J. J. Chem. Educ. 1996, 73, 421.
Ionic Bonding |
Metals |
Solutions / Solvents
|
Work Done by a Chemical Reaction Henry Brouwer The use of the "hot dog clock" has been the focus of discussions in a number of areas of electrochemistry. Included in these have been oxidation-reduction potentials, battery construction, salt bridges, electrolytes, and the concentration of ions in certain foods. Brouwer, Henry. J. Chem. Educ. 1996, 73, 354.
Electrochemistry |
Food Science |
Oxidation / Reduction |
Electrolytic / Galvanic Cells / Potentials
|
CAI for Chemistry Lesile Glasser, John D. Bradley, George Brink, and Pam van Zyl These six programs provide an opportunity for interactive practice of general chemistry material. Glasser, L.; Bradley, J. D.; Brink, G.; van Zyl, P. . J. Chem. Educ. 1996, 73, 323.
Nuclear / Radiochemistry |
Precipitation / Solubility |
Electrochemistry |
Periodicity / Periodic Table
|
Evaluating Student Understanding of Solution Chemistry through Microscopic Representations Kimberly Jo Smith and Patricia A. Metz Misconceptions regarding acids and bases, acid strength, dissociation, diatomic elements, bonding, and aqueous solutions can interfere with subsequent learning and can persist beyond the undergraduate level These chemical concepts readily lend themselves to microscopic representations. Teaching strategies using these visual aids could explain the concept before applying the mathematics. Smith, Kimberly Jo; Metz, Patricia A. J. Chem. Educ. 1996, 73, 233.
Solutions / Solvents |
Learning Theories
|
Using Quality Circles in General Chemistry Kogut, Leonard S. A second semester class in General Chemistry used a student Quality Circle to suggest methods to improve instruction in chemical equilibrium in solution. Kogut, Leonard S. J. Chem. Educ. 1996, 73, 146.
Equilibrium |
Solutions / Solvents
|
Small-Scale Potentiometry and Silver One-Pot Reactions David W. Brooks, Dianne Epp, and Helen B. Brooks Apparatus and method for construction and application of a silver reference electrode in silver one-pot reactions. Brooks, David W.; Epp, Dianne; Brooks, Helen B. J. Chem. Educ. 1995, 72, A162.
Electrochemistry |
Laboratory Equipment / Apparatus |
Potentiometry |
Ion Selective Electrodes |
Microscale Lab
|
From Christmas Ornament to Glass Electrode Rogério T. da Rocha, Ivano G. R. Gutz, and Claudimir L. do Lago Instructions and use of a homemade glass electrode for pH measurements/titrations. Da Rocha, Rogerio T.; Gutz, Ivano G. R.; do Lago, Claudimir L. J. Chem. Educ. 1995, 72, 1135.
Laboratory Equipment / Apparatus |
Electrochemistry |
Titration / Volumetric Analysis |
Ion Selective Electrodes |
Aqueous Solution Chemistry |
Acids / Bases |
Laboratory Management |
pH
|
Photosynthesis: Why Does It Occur? J. J. MacDonald Explanation of why photosynthesis occurs; stating that it is merely the reverse of respiration is misleading. MacDonald, J. J. J. Chem. Educ. 1995, 72, 1113.
Plant Chemistry |
Reactions |
Thermodynamics |
Photochemistry |
Electrochemistry
|
Crystallization of Supersaturated Sodium Acetate and the Temperature Dependence of the Autoionization Constant of Water Joseph A. Pergler, Ronald O. Ragsdale, and Thomas G. Richmond A procedure to qualitatively demonstrate the variation of the autoionization constant of water with temperature. Pergler, Joseph A.; Ragsdale, Ronald O.; Richmond, Thomas G. J. Chem. Educ. 1995, 72, 1027.
Crystals / Crystallography |
Aqueous Solution Chemistry |
Solutions / Solvents |
Acids / Bases |
Precipitation / Solubility |
Water / Water Chemistry
|
What Does It Mean?: Reflections on Concentration, Activity, and Electrode Potential Pietro Lanza Explanation of electrode potential and the mechanism of the electrode process for determining concentration. Lanza, Pietro. J. Chem. Educ. 1995, 72, 1009.
Solutions / Solvents |
Aqueous Solution Chemistry |
Atomic Properties / Structure |
Ion Selective Electrodes |
Electrochemistry
|
What's Present? Qualitative Analysis Problems in General Chemistry Sidney Toby Open-book, research-oriented, sample questions regarding qualitative analysis. Toby, Sidney. J. Chem. Educ. 1995, 72, 1008.
Qualitative Analysis |
Aqueous Solution Chemistry |
Solutions / Solvents |
Descriptive Chemistry
|
Ammonia Fountain and Density Gradient Column Miroslav Proksa Demonstration combining the ammonia fountain with an acid-base indicator density column. Proksa, Miroslav. J. Chem. Educ. 1995, 72, 931.
Solutions / Solvents |
Aqueous Solution Chemistry |
Physical Properties |
Gases |
Acids / Bases
|
The Use of Erythrosin B in Undergraduate Spectrophotometry Experiments L. James Stock III Substitution of a nontoxic food color for an originally used toxic chromium(VI) salt in a general chemistry, spectrophotometry experiment. Stock, L. James, III. J. Chem. Educ. 1995, 72, 926.
Toxicology |
Solutions / Solvents |
Spectroscopy |
Laboratory Management
|
A New Low-Cost Apparatus for Electrolysis of Water Chieko Suzuki Low-cost alternative to the Hofmann apparatus for the electrolysis of water. Suzuki, Chieko. J. Chem. Educ. 1995, 72, 912.
Electrochemistry |
Water / Water Chemistry |
Laboratory Equipment / Apparatus
|
Multiple Burning Heaps of Color-- An Elegant Variation of a Flame Test Eugene T. Smith Making the ammonia fountain demonstration faster and more reliable using a common syringe. Smith, Eugene T. J. Chem. Educ. 1995, 72, 828.
Laboratory Equipment / Apparatus |
Gases |
Solutions / Solvents |
Amines / Ammonium Compounds
|
A Cheap, Semiquantitative Hand-Held Conductivity Tester Susan K. S. Zawacky Plans for a inexpensive, semiquantitative, hand-held conductivity tester. Zawacky, Susan K. S. J. Chem. Educ. 1995, 72, 728.
Conductivity |
Laboratory Equipment / Apparatus
|
Osmotic Pressure and Electrochemical Potential--A Parallel Rainer Bausch Comparison of osmotic pressure and electrochemical potential. Bausch, Rainer. J. Chem. Educ. 1995, 72, 713.
Electrochemistry |
Solutions / Solvents |
Membranes |
Transport Properties
|
Resistance Measurement as a Tool for Corrosion Studies Singh, N. P.; Gupta, S. C.; Sood, B. R. Procedure for determining the rate of corrosion by measuring changes in the resistance of a thin wire or strip of metal; sample data and analysis included. Singh, N. P.; Gupta, S. C.; Sood, B. R. J. Chem. Educ. 1995, 72, 465.
Oxidation / Reduction |
Metals |
Rate Law |
Reactions |
Electrochemistry
|
Rapid Calculation for Preparing Solutions Calero, Diego Lozano Streamlined method for dilution calculations. Calero, Diego Lozano J. Chem. Educ. 1995, 72, 424.
Aqueous Solution Chemistry |
Solutions / Solvents |
Chemometrics
|
The "Golden Penny" Demonstration: An Explanation of the Old Experiment and the Rational Design of the New and Simpler Demonstration. Szczepankiewicz, Steven H.; Bieron, Joseph F.; Kozik, Mariusz An explanation and simpler/safer design for the classical "gold penny" demonstration. Szczepankiewicz, Steven H.; Bieron, Joseph F.; Kozik, Mariusz J. Chem. Educ. 1995, 72, 386.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
An Easily Constructed Salicylate-Ion-Selective Electrode for Use in the Instructional Laboratory Creager, Stephen E.; Lawrence, Kyle D.; Tibbets, Craig R. Construction and use of a salicylate-ion-selective electrode; includes a calibration curve. Creager, Stephen E.; Lawrence, Kyle D.; Tibbets, Craig R. J. Chem. Educ. 1995, 72, 274.
Laboratory Equipment / Apparatus |
Atomic Properties / Structure |
Aqueous Solution Chemistry |
Electrochemistry |
Ion Selective Electrodes
|
Use of Electrochemical Concentration Cells to Demonstrate the Dimeric Nature of Mercury(I) in Aqueous Media Bhattacharya, Deepta; Peters, Dennis G. Experimental procedure for demonstrating that divalent mercury is monovalent in aqueous solution; includes data and analysis. Bhattacharya, Deepta; Peters, Dennis G. J. Chem. Educ. 1995, 72, 64.
Atomic Properties / Structure |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry
|
Augmenting a classical electrochemical demonstration Yochum, Susan M.; Luoma, John R. Substituting magnesium for zinc in the copper/zinc electrochemical cell to enhance student understanding of electrochemistry; includes data and analysis. Yochum, Susan M.; Luoma, John R. J. Chem. Educ. 1995, 72, 55.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
An Electrochemistry Experiment: Hydrogen Evolution Reaction on Different Electrodes Marin, D.; Medicuti, F.; Teijeiro, C. This paper presents a simple laboratory experiment designed to acquaint the student with overvoltage in the hydrogen evolution reaction. Marin, D.; Medicuti, F.; Teijeiro, C. J. Chem. Educ. 1994, 71, A277.
Electrochemistry |
Ion Selective Electrodes
|
Determination of Ionic Mobilities by Thin-Layer Electrodeposition Kuhn, Alexander; Argoul, Francoise The authors describe a new method for the determination of ionic mobilities. An advantage of the measurement described is that it allows its demonstration within the framework of the student's practical training in ionic conductivity. Kuhn, Alexander; Argoul, Francoise J. Chem. Educ. 1994, 71, A273.
Electrochemistry |
Ion Selective Electrodes |
Metals
|
A Microscale Rotary Evaporator Maynard, David F. A simple roto-vap-type apparatus was developed for rapid removal of excess solvent in the microscale laboratory. Maynard, David F. J. Chem. Educ. 1994, 71, A272.
Microscale Lab |
Solutions / Solvents |
Laboratory Equipment / Apparatus
|
Salt Bridge Using Soil Moist Brooks, David W.; Brooks, Helen B. Using Soil Moist in the stem of a plastic transfer pipet as an effective salt bridge for small scale electrochemical experiments. Brooks, David W.; Brooks, Helen B. J. Chem. Educ. 1994, 71, A62.
Microscale Lab |
Laboratory Equipment / Apparatus |
Electrochemistry
|
A Mini-Qualitative Organic Analysis Session Labuschagne, A. Johan H.; Malherbe, Johannes S.; Meyer, Cornelius J. The article describes a tested mini-scheme that works for selected unknowns and allows an instructor to introduce non-major students to a variety of functional group tests in a single laboratory session. Labuschagne, A. Johan H.; Malherbe, Johannes S.; Meyer, Cornelius J. J. Chem. Educ. 1994, 71, 1088.
Qualitative Analysis |
Solutions / Solvents |
Nonmajor Courses
|
A Chemistree Murov, Steven The electrocuted pickle demonstration has an new twist in which a Christmas tree was formed using fluorescing pickles. Murov, Steven J. Chem. Educ. 1994, 71, 1082.
Electrochemistry
|
Not So Late Night Chemistry with USD Koppang, Miles D.; Webb, Karl M.; Srinivasan, Rekha R. Through the program, college students enhance their knowledge and expertise on a chemical topic and gain experience in scientific presentations. They also serve as role models to the high school students who can relate to college students more easily than the chemistry faculty members and their high school students. Koppang, Miles D.; Webb, Karl M.; Srinivasan, Rekha R. J. Chem. Educ. 1994, 71, 929.
Forensic Chemistry |
Polymerization |
Electrochemistry |
Isotopes |
Acids / Bases
|
Soda Water, Supercooling or Freezing Point Depression? Brooker, Murray H. Composition, preparation, properties, and behavior of soda water. Brooker, Murray H. J. Chem. Educ. 1994, 71, 903.
Gases |
Water / Water Chemistry |
Precipitation / Solubility |
Solutions / Solvents |
Consumer Chemistry
|
Experiments for Modern Introductory Chemistry: Intermolecular Forces and Raoult's Law Berka, Ladislav H.; Kildahl, Nicholas Procedure that illustrates the liquid-vapor phase equilibrium of ideal and nonideal solutions. Berka, Ladislav H.; Kildahl, Nicholas J. Chem. Educ. 1994, 71, 613.
Noncovalent Interactions |
Gas Chromatography |
Gases |
Liquids |
Equilibrium |
Solutions / Solvents
|
An Interactive Multimedia Software Program for Exploring Electrochemical Cells Greenbowe, Thomas J. The "Electrochemical Workbench" is one component of a software package that allows students and faculty to explore building and testing electrochemical cells by simulating a chemistry laboratory in which students can perform experiments. Greenbowe, Thomas J. J. Chem. Educ. 1994, 71, 555.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry
|
Visual Demonstration of Solvent Polarities Johnson, Dawn A.; Shaw, Roosevelt; Silversmith, Ernest F. A solution that shows visible color differences as the solvent polarity is changed. Johnson, Dawn A.; Shaw, Roosevelt; Silversmith, Ernest F. J. Chem. Educ. 1994, 71, 517.
Solutions / Solvents
|
Hydrogen Peroxide Demo Curing the Brown Bottle-with-Black Cap Syndrome Sae, Andy Comparing the reactivity of 3%, 12%, and 27% H2O2 solution. Sae, Andy J. Chem. Educ. 1994, 71, 433.
Solutions / Solvents |
Aqueous Solution Chemistry
|
Pictorial Analogies XI: Concentrations and Acidity of Solutions Fortman, John J. Visual analogies of the concentration of a solution, strength of a solution, super saturated solution, conjugate acid-base pairs, and inverse relationship between pH and [H+] and pOH and [OH-]. Fortman, John J. J. Chem. Educ. 1994, 71, 430.
Solutions / Solvents |
Aqueous Solution Chemistry |
Acids / Bases |
pH
|
Two Safe Student Conductivity Apparatus Katz, David A.; Willis, Courtney Design, construction, and application of two conductivity apparatus. Katz, David A.; Willis, Courtney J. Chem. Educ. 1994, 71, 330.
Conductivity |
Laboratory Equipment / Apparatus |
Microscale Lab
|
Avoiding the Downstream Hazard in an Ionic Solubility Study McSwiney, H. D. Using potassium chlorate rather than potassium dichromate in an ionic solubility experiment for improved waste disposal. McSwiney, H. D. J. Chem. Educ. 1994, 71, 329.
Precipitation / Solubility |
Solutions / Solvents |
Laboratory Management
|
Using the Biological Cell in Teaching Electrochemistry Merkel, Eva Gankiewicz How electricity is produced in a simple cell is correlated with how commercial batteries work; this concept can then be related to how living cells send electrical impulses. Merkel, Eva Gankiewicz J. Chem. Educ. 1994, 71, 240.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Equilibrium
|
Classroom Demonstration of Fluid Flow as a Result of an Ionic Current in a Magnetic Field Ritchie, Ian M.; Power, Gregory P. Using corroding zinc to observe fluid flow in the presence of a magnetic field. Ritchie, Ian M.; Power, Gregory P. J. Chem. Educ. 1994, 71, 158.
Electrochemistry
|
An Analogy To Illustrate Miscibility of Liquids Thornton, Barry K. Using inter-school rivalries to illustrate the concept of "like dissolves like". Thornton, Barry K. J. Chem. Educ. 1994, 71, 156.
Solutions / Solvents
|
Patriotic Electrolysis of Water DuPre, Donald B. Producing reversible red, white and blue in a single Petri dish. DuPre, Donald B. J. Chem. Educ. 1994, 71, 70.
Electrochemistry |
Oxidation / Reduction
|
Ionic Conduction and Electrical Neutrality in Operating Electrochemical Cells: Pre-College and College Student Interpretations Ogude, A. N.; Bradley, J. D. Results of an investigation on pre-college and college student difficulties regarding the qualitative interpretation of the microscopic processes that take place in operating chemical cells. Ogude, A. N.; Bradley, J. D. J. Chem. Educ. 1994, 71, 29.
Conductivity |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Classifying Substances by Electrical Character: An Alternative to Classifying by Bond Type Nelson, P. G. An alternative classification of substances based on their electrical properties. Nelson, P. G. J. Chem. Educ. 1994, 71, 24.
Conductivity |
Covalent Bonding |
Ionic Bonding |
Metallic Bonding |
Semiconductors
|
Photon-initiated hydrogen-chlorine reaction: A student experiment at the microscale level Egolf, Leanne M.; Keiser, Joseph T. This lab offers a way to integrate the principles of thermodynamics and kinetics as well as other valuable instrumental methods. Egolf, Leanne M.; Keiser, Joseph T. J. Chem. Educ. 1993, 70, A208.
Covalent Bonding |
Ionic Bonding |
Electrochemistry |
Free Radicals |
Microscale Lab |
Thermodynamics |
Kinetics
|
Heat of solution of hydrogen chloride: A laboratory experiment Harms, Gregory S.; Lehman, Thomas A. A simple technique for measuring the heat of solution of HCl in water. Harms, Gregory S.; Lehman, Thomas A. J. Chem. Educ. 1993, 70, 955.
Acids / Bases |
Solutions / Solvents |
Calorimetry / Thermochemistry
|
An expanded silver ion equilibria demonstration: Including use of the Nernst equation and calculation of nine equilibrium constants Anderson, Robert Hunt A modification of a demonstration that yields a quantitative measure of ions. Anderson, Robert Hunt J. Chem. Educ. 1993, 70, 940.
Electrochemistry |
Ion Exchange
|
A high school adventure Cullen, Schuyler; Pardini, Aaron; Vang, Yeng; Wasinger, Erik; Ball, Jenelle; Cooke, Ron; Willis, Grover Prompted by their students discovery an error in a popular lab activity, these authors encourage readers of the Journal to think about the meaning and importance of inquiry in science education. Cullen, Schuyler; Pardini, Aaron; Vang, Yeng; Wasinger, Erik; Ball, Jenelle; Cooke, Ron; Willis, Grover J. Chem. Educ. 1993, 70, 823.
Electrochemistry
|
Determination of sugars in food products: Using HPLC and electrochemical detection at a Cu electrode Luo, Peifang; Luo, Matthew Z.; Baldwin, Richard P. This lab activity takes advantage of the fact that students' interest in a lab is increased when common life experiences are drawn upon. Luo, Peifang; Luo, Matthew Z.; Baldwin, Richard P. J. Chem. Educ. 1993, 70, 679.
Chromatography |
Applications of Chemistry |
Food Science |
Instrumental Methods |
Solutions / Solvents
|
Introducing probabilistic concepts in chemistry: The preparation of 10-24 M solution as a limiting case de Vicente, M. Sastre A straightforward dilution experiment that can be used as the starting point for establishing a link between chemistry and concepts of probability theory. de Vicente, M. Sastre J. Chem. Educ. 1993, 70, 674.
Solutions / Solvents |
Chemometrics
|
The electrician's multimeter in the chemistry teaching laboratory: Part 2: Potentiometry and conductimetry Sevilla, Fortunato, III; Alfonso, Rafael L.; Andres, Roberto T. Further applications of the multimeter in chemistry laboratories are discussed in this paper: potentiometry, reduction potentials and cell EMF, the Nerst equations, pH measurements, titration, conductimetry, and conduction of solutions. Sevilla, Fortunato, III; Alfonso, Rafael L.; Andres, Roberto T. J. Chem. Educ. 1993, 70, 580.
Acids / Bases |
Solutions / Solvents |
Titration / Volumetric Analysis |
Electrochemistry |
Laboratory Equipment / Apparatus |
Potentiometry
|
Electronegativity and bond type: I. Tripartate separation Sproul, Gordon D. As a unifying concept of bonding, electronegativity has been widely applied but gets only a limited treatment in most general chemistry texts. Sproul, Gordon D. J. Chem. Educ. 1993, 70, 531.
Ionic Bonding |
Covalent Bonding |
Electrochemistry
|
The aluminum can as electrochemical energy source Lehman, Thomas A.; Renich, Paul; Schmidt, Norman E. A high-current electrochemical cell made from aluminum cans and scraps of copper wire that illustrates important electrochemical principles. Lehman, Thomas A.; Renich, Paul; Schmidt, Norman E. J. Chem. Educ. 1993, 70, 495.
Electrochemistry
|
Gallium beating heart Ealy, James L., Jr. Oscillating gallium in a Petri dish offers an exciting demonstration. Ealy, James L., Jr. J. Chem. Educ. 1993, 70, 491.
Electrochemistry |
Metals
|
General chemistry lab time to learn solutions Marino, Francis. Concern over the number of upper-division students who come to lab unable to prepare solutions. Marino, Francis. J. Chem. Educ. 1993, 70, 407.
Solutions / Solvents
|
Polarity, miscibility, and surface tension of liquids Silverstein, Todd P. A very simple overhead projector demonstration using water and ethanol to give a dramatic visual illustration of cohesive and adhesive forces. Silverstein, Todd P. J. Chem. Educ. 1993, 70, 253.
Water / Water Chemistry |
Solutions / Solvents
|
Coloring titanium and related metals by electrochemical oxidation Gaul, Emily Procedure for anodizing metals as a companion experiment to electroplating. The activity is very appealing to students in visual arts. Gaul, Emily J. Chem. Educ. 1993, 70, 176.
Metals |
Electrochemistry |
Nonmajor Courses
|
Demonstration of the Common Ion Effect Koubek, E. KCl and HCl are used in this demonstration to describe the common ion effect and to show the difference between values Q and K. Koubek, E. J. Chem. Educ. 1993, 70, 155.
Solutions / Solvents |
Equilibrium
|
A Short Cut Specific to the Preparation of 1 M Sodium Hydroxide Ruekberg, Ben In general chemistry, 1M of NaOH needs to be prepared often and without great concern for high purity of solution. The author provides a procedure. Ruekberg, Ben J. Chem. Educ. 1993, 70, 72.
Laboratory Management |
Solutions / Solvents
|
Chemical Demonstrations: A Handbook for Teachers of Chemistry, Volume 4 (Shakhashiri, Bassam Z.) Kauffman, George B. 78 procedures grouped into two chapters, one on clock reactions, the other on electrochemistry, batteries, electrolytic cells, and plating. Kauffman, George B. J. Chem. Educ. 1992, 69, A187.
Reactions |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Ammonia balloon Mattson, Bruce Demonstrating ammonia's aqueous solubility using a container whose volume changes. Mattson, Bruce J. Chem. Educ. 1992, 69, 1029.
Amines / Ammonium Compounds |
Precipitation / Solubility |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Kinetic art through chemistry Corkern, Walter H.; Holmes, L. H., Jr.; Higginbotham, N. A. Ethanol / water solution + one drop of heptanol with dissolved dye produces fractal-like patterns. Corkern, Walter H.; Holmes, L. H., Jr.; Higginbotham, N. A. J. Chem. Educ. 1992, 69, 1025.
Solutions / Solvents |
Dyes / Pigments |
Alcohols
|
Fractal structures for the overhead projector Silverman, L. Phillip One of the most interesting electrochemistry demonstrations is the production of dendritic silver fractals via electrodeposition onto water. The demonstration can be adapted easily for use on an overhead projector. Silverman, L. Phillip J. Chem. Educ. 1992, 69, 928.
Electrochemistry
|
Helping students to develop an hypothesis about electrochemistry: A demonstration with a lab report and supplemental worksheet VanderZee, Chester Author shares a successful electrochemistry demonstration with calculations and assessment. VanderZee, Chester J. Chem. Educ. 1992, 69, 924.
Electrochemistry |
Metals
|
Simple, inexpensive apparatus for sample concentration Bruno, Thomas J. An alternative to disadvantageous, commercial concentration apparatuses. Bruno, Thomas J. J. Chem. Educ. 1992, 69, 837.
Laboratory Equipment / Apparatus |
Solutions / Solvents
|
Viscosity of polymer solutions Bertrand, Gary L. This program contains three components: "Density of Liquids", "Viscosity of Liquids", and "Viscosity of Polymer Solutions". Bertrand, Gary L. J. Chem. Educ. 1992, 69, 818.
Solutions / Solvents |
Physical Properties |
Liquids
|
Conducting midshipmen - A classroom activity modeling extended bonding in solids Lomax, Joseph F. Using the electron-hopping model (analogous to people sitting in chairs) to explain electron movement and conductivity in insulators, semiconductors, and metals. Lomax, Joseph F. J. Chem. Educ. 1992, 69, 794.
Solids |
Solid State Chemistry |
Conductivity |
Metals |
Semiconductors
|
Ammonia fountain improvements Steadman, Ned Suggestions to eliminate the excessive preparation time and questionable reliability of the classic ammonia fountain demonstration. Steadman, Ned J. Chem. Educ. 1992, 69, 764.
Solutions / Solvents |
Precipitation / Solubility |
Aqueous Solution Chemistry
|
The Beer-Lambert law revisited: A development without calculus Lykos, Peter Development of the Beer-Lambert law without the use of calculus. Lykos, Peter J. Chem. Educ. 1992, 69, 730.
Solutions / Solvents
|
Electricity/electronic experiments for the chemistry laboratory. Braun, Robert D. Experiments that permit students to observe the behavior of simple electrical circuits, including a DC constant current source, voltage divider, diodes, logic gates, flip-flops, and the seven-segment display. Braun, Robert D. J. Chem. Educ. 1992, 69, 671.
Electrochemistry |
Instrumental Methods
|
The anode and the sunrise. Mierzecki, Roman. Etymology of the terms anode and cathode. Mierzecki, Roman. J. Chem. Educ. 1992, 69, 657.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Nomenclature / Units / Symbols
|
Like dissolves like: Dry gas Greenberg, Fred H. A demonstration of solubility by comparing gasoline additives containing methanol and isopropyl alcohol. Greenberg, Fred H. J. Chem. Educ. 1992, 69, 654.
Gases |
Solutions / Solvents
|
Gravimetric-gasometric determination of zinc on galvanized nails. Burgstahler, Albert W. A simple acid-dissolution method for a combined gravimetric-gasometric determination of the amount of zinc coating galvanized nails through reaction with HCl. Burgstahler, Albert W. J. Chem. Educ. 1992, 69, 575.
Gravimetric Analysis |
Qualitative Analysis |
Stoichiometry |
Electrochemistry
|
Simple soda bottle solubility and equilibria Snyder, Cheryl A.; Snyder, Dudley C. Using a bottle of selzter water and bromocresol green to demonstrate gas-liquid solubility (carbon dioxide in water). Snyder, Cheryl A.; Snyder, Dudley C. J. Chem. Educ. 1992, 69, 573.
Solutions / Solvents |
Precipitation / Solubility |
Equilibrium |
Gases |
Liquids |
Aqueous Solution Chemistry |
Water / Water Chemistry
|
The world's largest human salt bridge Silverman, L. Phillip; Bunn, Barbara B. On a beautiful April afternoon, the 1500 students had fun and learned something about electrochemistry, and they helped set a world's record for the "Longest Human Salt Bridge". Silverman, L. Phillip; Bunn, Barbara B. J. Chem. Educ. 1992, 69, 309.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Solutions, anyone? McCullough, Bro. Thomas A simple, quick, and economical experiment which gives the student intimate hands-on contact with most quantitative measurements of solutions is described. McCullough, Bro. Thomas J. Chem. Educ. 1992, 69, 293.
Solutions / Solvents |
Quantitative Analysis |
Stoichiometry
|
The use of equilibrium notation in listings of standard potentials. Donkersloot, Maarten C. A. The difficulty in equilibrium notation of standard electrode potentials is due to the convention that half-reactions must be written as reductions if the given potential is to be called a (standard) electrode potential. Donkersloot, Maarten C. A. J. Chem. Educ. 1992, 69, 256.
Equilibrium |
Electrochemistry
|
Cyclic indicator color change by titrant electrogeneration. Stock, John T. A simple but striking demonstration of coulometric titration. Stock, John T. J. Chem. Educ. 1992, 69, 253.
Electrochemistry |
Acids / Bases |
Titration / Volumetric Analysis
|
An Ace reducing adapter for screw vials. Canela, Ramon; Balcells, Merce. Using this device, solvents contained in vials can be evaporated quickly without problems. Canela, Ramon; Balcells, Merce. J. Chem. Educ. 1992, 69, 244.
Laboratory Equipment / Apparatus |
Solutions / Solvents |
Phases / Phase Transitions / Diagrams
|
Do "likes dissolve likes"? An illustration of polar and nonpolar solvents Bergquist, Wilbur Here is a simple and colorful demonstration to help illustrate the nature of polar and nonpolar solvents. Bergquist, Wilbur J. Chem. Educ. 1992, 69, 158.
Solutions / Solvents
|
A lemon-powered clock Letcher, Trevor M.; Sonemann, Aubrey W. Because a watch or crystal-quartz clock use very small batteries they can be powered with a number of "homemade" power sources. Letcher, Trevor M.; Sonemann, Aubrey W. J. Chem. Educ. 1992, 69, 157.
Electrochemistry |
Food Science
|
The conversion of chemical energy: Part 1. Technological examples Wink, Donald J. When a chemical reaction occurs, the energy of the chemical species may change and energy can be released or absorbed from the surroundings. This can involve the exchange of chemical energy with another kind of energy or with another chemical system. Wink, Donald J. J. Chem. Educ. 1992, 69, 108.
Reactions |
Thermodynamics |
Electrochemistry |
Photosynthesis
|
Electrochemical measurements in general chemistry lab using a student-constructed Ag-AgCl reference electrode Ahn, M. K.; Reuland, D. J.; Chadd, K. D. This paper describes a simple method of making a reproducible and durable reference electrode for use by freshmen chemistry students. Ahn, M. K.; Reuland, D. J.; Chadd, K. D. J. Chem. Educ. 1992, 69, 74.
Electrochemistry |
Laboratory Equipment / Apparatus
|
Principle of extraction of solute by solvent Guha, Prabir Kr.; Guha, Ratna Among the applications of Nernst's distribution law, the most important and interesting one is the extraction of a substance dissolved in one solvent by another solvent, the two solvents being partially miscible or immiscible. Guha, Prabir Kr.; Guha, Ratna J. Chem. Educ. 1992, 69, 73.
Solutions / Solvents |
Separation Science
|
The effect of temperature on the solubility of gases in liquids Alger, Donald B. Of 13 current-edition general chemistry texts, 11 made errors regarding the topic of the solubility of gases in liquids. Alger, Donald B. J. Chem. Educ. 1992, 69, 62.
Solutions / Solvents |
Precipitation / Solubility
|
The Voltaic pile: A stimulating general chemistry experiment Scharlin, Pirketta; Battino, Rubin An inexpensive, simple, and fun way to illustrate many of the principles in electrochemistry. Scharlin, Pirketta; Battino, Rubin J. Chem. Educ. 1991, 68, 665.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
A low-cost, portable, and safe apparatus for lecture hall conductivity demonstration Mercer, Gary D. This article describes an easily constructed apparatus for the measurement of conductivity that overcomes current restrictions and avoids bare wires. Mercer, Gary D. J. Chem. Educ. 1991, 68, 619.
Electrochemistry |
Conductivity
|
Recovery of silver from and some uses for waste silver chloride Murphy, J. A.; Ackerman, A. H.; Heeren, J. K. Procedures for conversion to silver nitrate, using waste AgCl as an oxidizing agent, and electrodepositon experiments. Murphy, J. A.; Ackerman, A. H.; Heeren, J. K. J. Chem. Educ. 1991, 68, 602.
Reactions |
Oxidation / Reduction |
Electrochemistry
|
Demonstrations of interfacial phenomena Prall, Bruce R. Overhead projector demonstrations that illustrate the interfacial interactions of the following systems: 1) water and carbon tetrachloride, 2) copper wire and water, 3) 1-Octanol and water. Prall, Bruce R. J. Chem. Educ. 1991, 68, 592.
Surface Science |
Liquids |
Water / Water Chemistry |
Solutions / Solvents
|
Teaching photometry with overhead projector experiments Gutz, Ivano G. R.; Angnes, Lucio; Pedrotti, Jairo J. Description of a photometry demonstration with an overhead projector. Gutz, Ivano G. R.; Angnes, Lucio; Pedrotti, Jairo J. J. Chem. Educ. 1991, 68, 325.
Potentiometry |
Acids / Bases |
Oxidation / Reduction |
Electrochemistry
|
Half cell reactions: Do students ever see them? Ciparick, Joseph D. This demonstration shows more clearly that there are two real half reactions. Ciparick, Joseph D. J. Chem. Educ. 1991, 68, 247.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Using a motor to demonstrate conductivity Solomon, Sally; Fulep-Poszmik, Annamaria The turning of a propeller identifies solutions of strong electrolytes. Solomon, Sally; Fulep-Poszmik, Annamaria J. Chem. Educ. 1991, 68, 160.
Aqueous Solution Chemistry |
Solutions / Solvents |
Conductivity
|
Reactivity of nickel Birk, James P.; Ronan, Martha; Bennett, Imogene; Kinney, Cheri A series of experiments which lead to observations about the reactivity of nickel. [Debut] Birk, James P.; Ronan, Martha; Bennett, Imogene; Kinney, Cheri J. Chem. Educ. 1991, 68, 48.
Reactions |
Quantitative Analysis |
Coordination Compounds |
Oxidation State |
Electrochemistry
|
Density of antifreeze-water mixtures: A general chemistry experiment in compositional analysis Flowers, Paul A. Determining the composition of an antifreeze/water solution through density measurements. Flowers, Paul A. J. Chem. Educ. 1990, 67, 1068.
Physical Properties |
Solutions / Solvents |
Quantitative Analysis
|
A simple demonstration of ion migration Little, John G. The migration of copper(II) and chromate ions is illustrated using a simple apparatus. Little, John G. J. Chem. Educ. 1990, 67, 1063.
Electrochemistry
|
Electrochemical conventions: Responses to a provocative opinion (6) Martin-Sanchez, M.; Martin-Sanchez, MaT The solution may be to use the etymological meaning of anode and cathode. Martin-Sanchez, M.; Martin-Sanchez, MaT J. Chem. Educ. 1990, 67, 992.
Electrochemistry |
Nomenclature / Units / Symbols |
Electrolytic / Galvanic Cells / Potentials
|
Electrochemical conventions: Responses to a provocative opinion (5) Sweeting, Linda M. The chemical potential of the electrons, not their "richness" determines direction of flow. Sweeting, Linda M. J. Chem. Educ. 1990, 67, 992.
Electrochemistry |
Nomenclature / Units / Symbols |
Electrolytic / Galvanic Cells / Potentials
|
Electrochemical conventions: Responses to a provocative opinion (4) Fochi, Giovanni It is sufficient to show what part of the circuit is the electric generator. Fochi, Giovanni J. Chem. Educ. 1990, 67, 992.
Electrochemistry |
Nomenclature / Units / Symbols |
Electrolytic / Galvanic Cells / Potentials
|
Electrochemical conventions: Responses to a provocative opinion (3) Woolf, A. A. There are no shortcuts in teaching the electrochemistry of galvanic cells; the process in each cell must be treated holistically. Woolf, A. A. J. Chem. Educ. 1990, 67, 992.
Electrochemistry |
Nomenclature / Units / Symbols |
Electrolytic / Galvanic Cells / Potentials
|
Electrochemical conventions: Responses to a provocative opinion (2) Castellan, Gilbert W. The difficulty is not so much confusion over conventions as the actual wrong use of terminology. Castellan, Gilbert W. J. Chem. Educ. 1990, 67, 991.
Electrochemistry |
Nomenclature / Units / Symbols |
Electrolytic / Galvanic Cells / Potentials
|
Electrochemical conventions: Responses to a provocative opinion (1) Freeman, Robert D. There is no convincing evidence of confusion regarding electrochemical conventions and the author's proposed solutions are unacceptable. Freeman, Robert D. J. Chem. Educ. 1990, 67, 990.
Electrochemistry |
Nomenclature / Units / Symbols |
Electrolytic / Galvanic Cells / Potentials
|
Teaching freezing point lowering Ball, Jenelle; Cooke, Ron C.; Willis, Grover Using Le Chatelier's principle, the van't Hoff equation, and the empirical equation to explain the lowering of the freezing point caused by dissolving antifreeze in water. Ball, Jenelle; Cooke, Ron C.; Willis, Grover J. Chem. Educ. 1990, 67, 676.
Physical Properties |
Solutions / Solvents |
Equilibrium |
Aqueous Solution Chemistry
|
A convenient method to recover the solvent from halogen-CCl4 mixtures Sabol, Joseph E.; Kurtz, David W. An alternative to disposal and distillation which is easy to perform, allowing the solvent to be recovered and stored within one hour after the completion of the experiment is presented here. Sabol, Joseph E.; Kurtz, David W. J. Chem. Educ. 1990, 67, 532.
Solutions / Solvents |
Separation Science |
Laboratory Management
|
Membrane material for a galvanic cell Eggleton, Gordon L; Williamson, John J.; Johnson, Donna K. The tubes for each electrode are prepared from a disposable polystyrene serological pipet. Eggleton, Gordon L; Williamson, John J.; Johnson, Donna K. J. Chem. Educ. 1990, 67, 527.
Electrolytic / Galvanic Cells / Potentials |
Electrochemistry
|
A simple apparatus for stirring solutions contained in submerged, sealed vessels Grinstead, John H., Jr.; Sullivan, Jack M. The authors designed an apparatus which can simultaneously stir the contents of several submerged flasks from readily available materials. Grinstead, John H., Jr.; Sullivan, Jack M. J. Chem. Educ. 1990, 67, 521.
Laboratory Equipment / Apparatus |
Solutions / Solvents
|
Development of a new design for multipurpose meter: "Calo-pH Meter" Paris, Michel R.; Aymes, Daniel J.; Poupon, Rene; Gavasso, Roland The purpose of this article is to describe the design of a common box that can be turned into a simple voltmeter, a pH meter, or a calorimeter. Paris, Michel R.; Aymes, Daniel J.; Poupon, Rene; Gavasso, Roland J. Chem. Educ. 1990, 67, 507.
Laboratory Equipment / Apparatus |
Electrochemistry |
pH |
Calorimetry / Thermochemistry
|
Redox reactions and the electropotential axis Vella, Alfred J. An introductory discussion should not get bogged down with the problems of representing cells by standard cell diagrams and notations and instead should concentrate on the chemistry of galvanic cells and the use of these cells in describing the concepts of redox chemistry. Vella, Alfred J. J. Chem. Educ. 1990, 67, 479.
Oxidation / Reduction |
Electrolytic / Galvanic Cells / Potentials |
Electrochemistry
|
Heat of solution and colligative properties: An illustration of enthalpy and entropy Mundell, Donald W. This demonstration provides a means for challenging the students to interpret some examples where both enthalpy and entropy are possible. Mundell, Donald W. J. Chem. Educ. 1990, 67, 426.
Calorimetry / Thermochemistry |
Phases / Phase Transitions / Diagrams |
Solutions / Solvents
|
Wet labs, computers, and spreadsheets Durham, Bill The following is a description of some commonly encountered experiments that have been modified for computerized data acquisition. Durham, Bill J. Chem. Educ. 1990, 67, 416.
Laboratory Computing / Interfacing |
Nuclear / Radiochemistry |
Titration / Volumetric Analysis |
Calorimetry / Thermochemistry |
Kinetics |
Electrochemistry
|
The growth of large single crystals Baer, Carl D. It is possible to obtain a wide range of nicely formed crystals utilizing solution methods and commonly available materials and apparatus. Baer, Carl D. J. Chem. Educ. 1990, 67, 410.
Crystals / Crystallography |
Solutions / Solvents
|
An effective approach to teaching electrochemistry Birss, Viola I.; Truax, D. Rodney By interweaving concepts from thermodynamics and chemical kinetics with those of electrochemical measurement, the authors provide students with an enriched appreciation of the utility of ideas from kinetics and thermodynamics. Birss, Viola I.; Truax, D. Rodney J. Chem. Educ. 1990, 67, 403.
Electrochemistry |
Kinetics |
Thermodynamics
|
Construction and evaluation of an inexpensive reference electrode with internal electrolyte in agar matrix Victoria, Leandro; Ortega, M. Gloria; Ibanez, Jose A. In this paper the authors show how to construct a reference electrode of Ag/AgCl with an internal electrolyte in agar matrix. Victoria, Leandro; Ortega, M. Gloria; Ibanez, Jose A. J. Chem. Educ. 1990, 67, 179.
Electrolytic / Galvanic Cells / Potentials |
Electrochemistry |
Laboratory Equipment / Apparatus
|
The construction and use of commercial voltaic cell displays in freshman chemistry Shearer, Edmund C. This contribution reports two displays in electrochemistry which serve to increase student interest, show a practical application, and illustrate how chemistry and technology work together. Shearer, Edmund C. J. Chem. Educ. 1990, 67, 158.
Electrochemistry
|
The human salt bridge Scharlin, Pirketta; Battino, Rubin In this paper the authors describe a simple device designed for use on an overhead projector to illustrate the "human salt bridge". Scharlin, Pirketta; Battino, Rubin J. Chem. Educ. 1990, 67, 156.
Electrochemistry
|
Current efficiency in electrolysis Bricker, Clark E. Demonstration apparatus that can be used to show the effect of various variables on the current efficiency for the deposition of copper. Bricker, Clark E. J. Chem. Educ. 1989, 66, 954.
Electrochemistry
|
Alleviating the common confusion caused by polarity in electrochemistry Moran, P. J.; Gileadi, E. The issue of polarity encountered in electrochemistry and relevant to a variety of electrochemical concepts often confuses students and is an unnecessary deterrent to the study of electrochemistry. Moran, P. J.; Gileadi, E. J. Chem. Educ. 1989, 66, 912.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Electrochemistry of the zinc-silver oxide system. Part 2. Practical measurements of energy conversion using commercial miniature cells Smith, Michael J.; Vincent, Colin A. Experiments in which "button cells" are discharged and charged under controlled conditions so that practical energy conversions and a number of other parameters may be studied. Smith, Michael J.; Vincent, Colin A. J. Chem. Educ. 1989, 66, 683.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Confusion over electrochemical conventions: A proposed solution Al-Soudi, Helen The present teaching of electrochemistry in U.S. texts leads to confusion. Al-Soudi, Helen J. Chem. Educ. 1989, 66, 630.
Electrochemistry
|
A versatile compact reference electrode Kusuda, Kousuke Construction of a compact saturated calomel electrode. Kusuda, Kousuke J. Chem. Educ. 1989, 66, 531.
Laboratory Equipment / Apparatus |
Electrochemistry
|
An experiment on the molar solubility and solubility product of barium nitrate Wruck, Betty; Reinstein, Jesse A direct gravimetric method for determining a Ksp value. Wruck, Betty; Reinstein, Jesse J. Chem. Educ. 1989, 66, 515.
Solutions / Solvents |
Precipitation / Solubility |
Gravimetric Analysis
|
Using a projecting voltmeter to introduce voltaic cells Solomon, Sally; Lee, Jeffrey; Schnable, Joseph; Wirtel, Anthony Using a transparent "projecting" voltmeter and assembling a zinc versus copper cell one component at a time allows students to develop a more concrete notion of the nature of a voltaic cell and the potential it produces. Solomon, Sally; Lee, Jeffrey; Schnable, Joseph; Wirtel, Anthony J. Chem. Educ. 1989, 66, 510.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Transformation of old two-electrode polarographs into three-electrode systems Papadopoulos, N.; Linardis, P. In this work a simple circuit is proposed that can transform a two-electrode polarograph into a three-electrode system. Papadopoulos, N.; Linardis, P. J. Chem. Educ. 1989, 66, 419.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Laboratory Equipment / Apparatus
|
An inexpensive and easily constructed device for quantitative conductivity experiments Rettich, Timothy R.; Battino, Rubin The low cost and easily replaced electrodes make this system practical for use in a general chemistry lab, while its accuracy and wide applicability permit its use in physical or quantitative chemistry experiments. Rettich, Timothy R.; Battino, Rubin J. Chem. Educ. 1989, 66, 168.
Quantitative Analysis |
Conductivity |
Laboratory Equipment / Apparatus
|
Chemical principles for the introductory laboratory, CHM 384 (Johnson, James F.) Wegner, Carol A comprehensive review of the title program which overviews basic techniques and concepts presented in introductory laboratory courses. Topics include: titration, equilibrium, Ksp, solubility, Beer's law, coordination complexes and first-order rates of reaction. Wegner, Carol J. Chem. Educ. 1988, 65, A47.
Acids / Bases |
Titration / Volumetric Analysis |
UV-Vis Spectroscopy |
Equilibrium |
Solutions / Solvents |
Coordination Compounds |
Kinetics
|
Electrolytic migration of ions Llorens-Molina, Juan A. This demonstration uses a thin layer of gelatin in place of the usual filter paper so that the migration can be viewed using an overhead projector. Llorens-Molina, Juan A. J. Chem. Educ. 1988, 65, 1090.
Noncovalent Interactions |
Ion Exchange |
Electrochemistry |
Thin Layer Chromatography
|
The determination of the concentrations of sugar solutions by laser refractometry Hughes, Elvin, Jr.; Jelks, Vaughn; Hughes, Diane Landry The purpose of this article is to describe a simple, semi-quantitative, analytical method for determining the approximate concentrations of sucrose solutions. Hughes, Elvin, Jr.; Jelks, Vaughn; Hughes, Diane Landry J. Chem. Educ. 1988, 65, 1007.
Lasers |
Quantitative Analysis |
Solutions / Solvents
|
Experimental work with tin(II) chloride in a high school Sanchez, Manuela Martin The author describes a final-project performed by students that integrates concepts of hydrolysis, Le Chatelier's principle, and electrolysis. Students seek answers to questions such as: "What reactions were involved; why is an aqueous solution of SnCl2 acidic; how can elemental tin be recovered from the system?" Sanchez, Manuela Martin J. Chem. Educ. 1988, 65, 898.
Separation Science |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Equilibrium |
Oxidation / Reduction
|
The effect of polarity on solubility Cliche, Jean-Marie; Labbe, Benoit A procedure for a demonstration of the effect of polarity on solubility and some follow-up questions for students. Cliche, Jean-Marie; Labbe, Benoit J. Chem. Educ. 1988, 65, 813.
Solutions / Solvents |
Aqueous Solution Chemistry
|
The interconversion of electrical and chemical energy: The electrolysis of water and the hydrogen-oxygen fuel cell Roffia, Sergio; Concialini, Vittorio; Paradisi, Carmen Presentation of a simple apparatus that allows an instructor to perform the electrolysis of water and the back conversion of the products to water while overcoming some typical drawbacks encountered in this process. Roffia, Sergio; Concialini, Vittorio; Paradisi, Carmen J. Chem. Educ. 1988, 65, 725.
Water / Water Chemistry |
Electrochemistry
|
Soap bubbles and precipitate membranes: Two historical semipermeability experiments adapted for teaching purposes Nicolini, Nicoletta; Pentella, Antonio These demonstrations are based on the historical experiments that established our understanding of semipermeability and osmosis. Nicolini, Nicoletta; Pentella, Antonio J. Chem. Educ. 1988, 65, 614.
Gases |
Surface Science |
Transport Properties |
Electrochemistry
|
Acid pickling with amines: an experiment in applied chemistry for high school or freshman chemistry Spears, Steven G.; Spears, Larry G.; Spears, Joycelyn C. A brief description of the removal of corrosion products and millscale from the surface of ferrous metals by acid pickling. Spears, Steven G.; Spears, Larry G.; Spears, Joycelyn C. J. Chem. Educ. 1988, 65, 457.
Oxidation / Reduction |
Acids / Bases |
Amines / Ammonium Compounds |
Electrochemistry
|
An interesting student chemistry project: Investigating Liesegang rings Schibeci, Renato A.; Carlsen, Connie This lab allows students not only exposure to content, but also an appreciation of the way in which scientists build their knowledge. Schibeci, Renato A.; Carlsen, Connie J. Chem. Educ. 1988, 65, 365.
Solutions / Solvents |
Geochemistry |
Metals
|
Electrochemical cells using sodium silicate Rapp, Bernard, FSC A procedure of assembly and execution of a demonstration of an electrochemical cell using sodium silicate. Rapp, Bernard, FSC J. Chem. Educ. 1988, 65, 358.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
The interconversion of electrical and chemical energy: The electrolysis of water and the hydrogen oxygen fuel cell Roffia, Sergio; Conciallini, Vittorio; Paradisi, Carmen The authors discuss some common drawbacks to typical electrolysis demonstrations and present an apparatus that overcomes these drawbacks. Roffia, Sergio; Conciallini, Vittorio; Paradisi, Carmen J. Chem. Educ. 1988, 65, 272.
Laboratory Equipment / Apparatus |
Stoichiometry |
Electrochemistry
|
A homemade lemon battery Worley, John D.; Fournier, James A brief note about how two instructors worked on and built a successful lemon battery. Worley, John D.; Fournier, James J. Chem. Educ. 1988, 65, 158.
Electrochemistry
|
Principles of electronegativity Part I. General nature Sanderson, R. T. The concept of electronegativity has been modified, expanded, and debated. The concept can be used to help students gain valuable insights and understanding of the cause-and-effect relationship between atomic structure and compound properties. This is the first in a series of articles that explores the important concept of electronegativity. Sanderson, R. T. J. Chem. Educ. 1988, 65, 112.
Electrochemistry |
Periodicity / Periodic Table |
Noncovalent Interactions |
Atomic Properties / Structure |
Physical Properties |
Enrichment / Review Materials
|
Fractal structures obtained by electrodeposition of silver at an air-water interface Ligon, Woodfin V., Jr. Growing dendritic crystals of silver Ligon, Woodfin V., Jr. J. Chem. Educ. 1987, 64, 1053.
Electrochemistry |
Crystals / Crystallography
|
When oil and water do not mix Trammell, Gary L. An introduction to the physics and chemistry of interfaces and lipids, and reactions in micelles. Trammell, Gary L. J. Chem. Educ. 1987, 64, 1022.
Aqueous Solution Chemistry |
Water / Water Chemistry |
Solutions / Solvents |
Micelles |
Lipids
|
Electrochemistry demonstrations with an overhead projector Ward, Charles R.; Greenbowe, Thomas J. A template designed to fit on the surface of an overhead projector and demonstrate electrochemical phenomena. Ward, Charles R.; Greenbowe, Thomas J. J. Chem. Educ. 1987, 64, 1021.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
A general approach for teaching hydrolysis of salts Aquirre-Ode, Fernando Proposes a general, rigorous, and relatively simple approach for the hydrolysis of 1-1 electrolytes. Aquirre-Ode, Fernando J. Chem. Educ. 1987, 64, 957.
Acids / Bases |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Modifications of some traditional demonstrations with liquids Stedjee, Brian Immiscible liquid pairs with similar indexes of refraction. Stedjee, Brian J. Chem. Educ. 1987, 64, 894.
Liquids |
Solutions / Solvents |
Physical Properties
|
More electrolysis experiments for the overhead projector Kolb, Kenneth E. Electrolytic cell made up of two 9-V batteries and suggestions for the electrolysis of several different materials. Kolb, Kenneth E. J. Chem. Educ. 1987, 64, 891.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Outmoded terminology: The normal hydrogen electrode Ramette, R. W. As educators, we should not confuse the "normal hydrogen electrode" with the "standard hydrogen electrode". Ramette, R. W. J. Chem. Educ. 1987, 64, 885.
Electrochemistry |
Nomenclature / Units / Symbols
|
Easily made electronic device for conductivity experiments Gadek, Frank J. Simple device made from a 35-mm film canister, 9-V battery and leads, resistor, and LED. Gadek, Frank J. J. Chem. Educ. 1987, 64, 628.
Conductivity |
Laboratory Equipment / Apparatus |
Aqueous Solution Chemistry
|
Safe and reliable electrode storage Williams, Howard P. A container that prevents evaporation and keeps electrodes ready for use. Williams, Howard P. J. Chem. Educ. 1987, 64, 556.
Laboratory Equipment / Apparatus |
Laboratory Management |
Electrochemistry |
Ion Selective Electrodes
|
Conductivity of solutions apparatus Vitz, Ed Design of simple device to demonstrate the conductivity of aqueous solutions using a pair of LED's. Vitz, Ed J. Chem. Educ. 1987, 64, 550.
Conductivity |
Laboratory Equipment / Apparatus
|
Ksp determination of calcium sulfate Masterman, David A procedure to obtain the Ksp of a saturated solution of calcium sulfate in 10-20 minutes. Masterman, David J. Chem. Educ. 1987, 64, 408.
Solutions / Solvents |
Precipitation / Solubility |
Aqueous Solution Chemistry
|
A commercially available electronic device for conductivity experiments Gadek, Frank J. Application of a continuity and tone-generating chassis in a variety of conductivity experiments, particularly for hearing or visually impaired students. Gadek, Frank J. J. Chem. Educ. 1987, 64, 281.
Laboratory Equipment / Apparatus |
Conductivity |
Minorities in Chemistry |
Aqueous Solution Chemistry
|
Simple determination of Henry's law constant for carbon dioxide Levy, Jack B.; Hornack, Fred M.; Levy, Matthew A. With the aid of inexpensive pressure gauges available from automotive supply stores, the solubility of carbon dioxide in carbonated beverages or other solutions can be studied. Levy, Jack B.; Hornack, Fred M.; Levy, Matthew A. J. Chem. Educ. 1987, 64, 260.
Gases |
Solutions / Solvents
|
Using NASA and the space program to help high school and college students learn chemistry. Part II. The current state of chemistry in the space program Kelter, Paul B.; Snyder, William E.; Buchar, Constance S. Examples and classroom applications in the areas of spectroscopy, materials processing, and electrochemistry. Kelter, Paul B.; Snyder, William E.; Buchar, Constance S. J. Chem. Educ. 1987, 64, 228.
Astrochemistry |
Spectroscopy |
Materials Science |
Electrochemistry |
Crystals / Crystallography
|
Demonstration of the pH changes during the electrolysis of water Habich, A.; Hausermann, H. R. Demonstration of the pH changes around the anode and cathode during the electrolysis of water. Habich, A.; Hausermann, H. R. J. Chem. Educ. 1987, 64, 171.
Electrochemistry |
pH
|
The disappearing act: Teaching students to expect the unexpected Kilner, Cary A demonstration of Ksp in which a precipitate is formed and then disappears. Kilner, Cary J. Chem. Educ. 1987, 64, 155.
Solutions / Solvents |
Precipitation / Solubility
|
An analogy for soluble and insoluble mixtures: Sand and magnetic iron filings Garde, Ira Batra Using mixtures of sand and iron filings as analogies for a soluble mixture of nonpolar substances, a soluble mixture of polar substances, and an insoluble mixture of a nonpolar and a polar substance. Garde, Ira Batra J. Chem. Educ. 1987, 64, 154.
Solutions / Solvents
|
A new road to reactions: Part III. Teaching the heat effect of reactions de Vos, Wobbe; Verdonk, Adri H. This series of work summarizes the authors' work on the concept of chemical reactions as a teaching and learning problem. de Vos, Wobbe; Verdonk, Adri H. J. Chem. Educ. 1986, 63, 972.
Thermodynamics |
Reactions |
Solutions / Solvents |
Acids / Bases
|
The coming renaissance of descriptive chemistry Zuckerman, J. J. Inorganic chemistry is facing an identity crises. Zuckerman, J. J. J. Chem. Educ. 1986, 63, 829.
Descriptive Chemistry |
Spectroscopy |
Synthesis |
Reactions |
Physical Properties |
Solutions / Solvents
|
The electrolysis of water: An improved demonstration procedure Heideman, Stephen The usual use of sulfuric acid as the electrolyte in the demonstration of the electrolysis of water does not allow students to observe the accompanying pH changes at the electrodes. Heideman, Stephen J. Chem. Educ. 1986, 63, 809.
Water / Water Chemistry |
pH |
Electrochemistry
|
Electrodeposition of nickel on copper Manjkow, Joseph; Levine, Dana In the classroom, one can demonstrate electroplating by the simple, fast, inexpensive, and visually interesting reaction between nickel ions and copper metal. Manjkow, Joseph; Levine, Dana J. Chem. Educ. 1986, 63, 809.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Oxidation / Reduction
|
SI and non-SI units of concentration: A truce? Rich, Ronald L. These authors examine whether a truce could be promoted by filling a chemical gap in the System Internationale with special attention on concentration. Rich, Ronald L. J. Chem. Educ. 1986, 63, 784.
Nomenclature / Units / Symbols |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Coulombic models in chemical bonding. II. Dipole moments of binary hydrides Sacks, Lawrence J. A discussion of Coulumbic models and their aid in understanding chemical bonding. Sacks, Lawrence J. J. Chem. Educ. 1986, 63, 373.
Electrochemistry |
Molecular Properties / Structure |
Covalent Bonding |
Noncovalent Interactions
|
Molecular size and Raoult's Law Kovac, Jeffrey An additional cause for deviations from Raoult's Law that is rarely, if ever, mentioned in freshman chemistry texts. Kovac, Jeffrey J. Chem. Educ. 1985, 62, 1090.
Molecular Properties / Structure |
Physical Properties |
Solutions / Solvents |
Gases
|
Goals in teaching electrochemistry Maloy, J. T. Important concepts regarding the subject of electrochemistry. Maloy, J. T. J. Chem. Educ. 1985, 62, 1018.
Electrochemistry
|
Electrochemistry Perkins, Ronald I. Why electrochemistry is important. Perkins, Ronald I. J. Chem. Educ. 1985, 62, 1018.
Electrochemistry
|
An individualized Nernst equation experiment Hambly, Gordon F. Each student is assigned a target voltage for a copper / silver voltaic cell. Hambly, Gordon F. J. Chem. Educ. 1985, 62, 875.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Quick conductivity cell Williams, Howard P. A simple cell for indicating the relative conductivity of electrolytes, nonelectrolytes, and weak electrolytes. Williams, Howard P. J. Chem. Educ. 1985, 62, 799.
Electrochemistry |
Conductivity |
Laboratory Equipment / Apparatus |
Aqueous Solution Chemistry
|
The definition and symbols for the quantity called "molarity" or "concentration" and for the SI units of this quantity Gorin, George An alternative formulation for concentration and the SI units for this quantity. Gorin, George J. Chem. Educ. 1985, 62, 741.
Nomenclature / Units / Symbols |
Solutions / Solvents
|
A different look at the solubility-product principle Hugus, Z Z., Jr.; Hentz, F. C., Jr. The progressive addition of Cl- to Ag+ yields an ion-product equal to Ksp at two different points. Hugus, Z Z., Jr.; Hentz, F. C., Jr. J. Chem. Educ. 1985, 62, 645.
Precipitation / Solubility |
Aqueous Solution Chemistry |
Solutions / Solvents |
Chemometrics
|
Estimating the one electron reduction potential for vanadium (V) by chemical techniques: An experiment for general chemistry Wentworth, R. A. D. Procedure requires no electrochemical equipment because the method depends solely upon observations of the spontaneity of the reactions of V(V) with a series of potential reducing agents and V(IV) with a series of potential oxidizing agents. Wentworth, R. A. D. J. Chem. Educ. 1985, 62, 440.
Oxidation State |
Oxidation / Reduction |
Electrochemistry
|
Simple limewater maker Prochaska, James F. Uses gravity to separate the insoluble precipitate when preparing limewater. Prochaska, James F. J. Chem. Educ. 1985, 62, 437.
Laboratory Equipment / Apparatus |
Aqueous Solution Chemistry |
Solutions / Solvents |
Precipitation / Solubility
|
Electrochemical errors DeLorenzo, Ron Ten examples of the unexpected consequences that have resulted from ignorance regarding electrochemistry. DeLorenzo, Ron J. Chem. Educ. 1985, 62, 424.
Electrochemistry |
Consumer Chemistry |
Applications of Chemistry |
Oxidation / Reduction
|
Water electrolysis-A surprising experiment Kelsh, Dennis J. Using aluminum wire for the cathode will produce "too much" hydrogen. Kelsh, Dennis J. J. Chem. Educ. 1985, 62, 154.
Water / Water Chemistry |
Electrochemistry
|
Change in concentration with time Umland, Jean B. Shows how the rate of a reaction is fast at first and then gradually decreases to zero when one reactant has been used up. Umland, Jean B. J. Chem. Educ. 1985, 62, 153.
Solutions / Solvents |
Kinetics |
Rate Law
|
Aqueous hydrogen peroxide: Its household uses and concentration units Webb, Michael J. Includes some simple weight / volume calculations and their answers. Webb, Michael J. J. Chem. Educ. 1985, 62, 152.
Aqueous Solution Chemistry |
Consumer Chemistry |
Nomenclature / Units / Symbols |
Solutions / Solvents
|
An alternative method for the determination of pKa Castillo S., Carlos; Micolta S., Germania; Grajales T., Mario Determining pKa from the titration curve of a weak acid or base. Castillo S., Carlos; Micolta S., Germania; Grajales T., Mario J. Chem. Educ. 1984, 61, 1067.
Acids / Bases |
pH |
Aqueous Solution Chemistry |
Solutions / Solvents
|
A new meaning of the terms acid and base hydrolysis Milic, Nikola B. Suggestions for distinguishing between solvation, hydration, and solvolysis, and hydrolysis reactions that produce hydroxo and protonated complexes. Milic, Nikola B. J. Chem. Educ. 1984, 61, 1066.
Acids / Bases |
Nomenclature / Units / Symbols |
Aqueous Solution Chemistry |
Solutions / Solvents
|
The insolubility of "soluble" barium nitrate Reinstein, Jesse The unexpected formation of a precipitate of barium nitrate when barium carbonate or barium phosphate is treated with dilute nitric acid. Reinstein, Jesse J. Chem. Educ. 1984, 61, 1009.
Solutions / Solvents |
Precipitation / Solubility
|
The effect of polarity on solubility Nordstrom, Brian H. Students observe that iodine dissolves readily in 1,1,1-trichloroethane but not water. Nordstrom, Brian H. J. Chem. Educ. 1984, 61, 1009.
Precipitation / Solubility |
Solutions / Solvents |
Molecular Properties / Structure |
Water / Water Chemistry
|
Modeling hypersaline lake "turn-over" Sprague, Gary Modeling saline lake inversions with a saturated salt solution in a beaker. Sprague, Gary J. Chem. Educ. 1984, 61, 956.
Water / Water Chemistry |
Aqueous Solution Chemistry |
Solutions / Solvents
|
An inexpensive, very high impedance digital voltmeter for selective electrodes Caceci, Marco S. Design and construction of an instrument that exceeds in accuracy and input impedance most expensive commercial pH meters and potentiometers. Caceci, Marco S. J. Chem. Educ. 1984, 61, 935.
Laboratory Equipment / Apparatus |
Electrochemistry |
pH
|
A perspective on solubility rules Monroe, Manus; Abrams, Karl Four solubility rule generalizations useful for introducing solubility. Monroe, Manus; Abrams, Karl J. Chem. Educ. 1984, 61, 885.
Aqueous Solution Chemistry |
Solutions / Solvents
|
The nine-bottle experiment revisited Finholt, James E. Students are challenged to design solutions appropriate for the "nine-bottle" experiment. Finholt, James E. J. Chem. Educ. 1984, 61, 849.
Aqueous Solution Chemistry |
Solutions / Solvents
|
The goals of teaching solution equilibrium Ruda, Paul T. Using and making relevant the concepts of solution equilibrium. Ruda, Paul T. J. Chem. Educ. 1984, 61, 784.
Equilibrium |
Solutions / Solvents
|
Why teach solution equilibrium? Butler, James N. What are the most important aspects of solution equilibrium to teach at the elementary level? Butler, James N. J. Chem. Educ. 1984, 61, 784.
Equilibrium |
Solutions / Solvents |
Acids / Bases |
pH
|
An analogy for solubility: Marbles and magnets Kjonaas, Richard A. Using marbles and magnets to illustrate solubility and insolubility. Kjonaas, Richard A. J. Chem. Educ. 1984, 61, 765.
Precipitation / Solubility |
Solutions / Solvents
|
An easily constructed secondary battery Yamana, Shukichi; Murakami, Mitsuhiro Constructing a very simple secondary battery from an aqueous solution of sodium chloride and other household materials Yamana, Shukichi; Murakami, Mitsuhiro J. Chem. Educ. 1984, 61, 713.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry
|
Solubility of mercury Sisler, Harry H. The statement "mercury is soluble in both polar and non-polar liquids" is misleading. Sisler, Harry H. J. Chem. Educ. 1984, 61, 566.
Solutions / Solvents |
Precipitation / Solubility
|
The solubility of NiSO46H2O Pacer, Richard A. Approaches the position of equilibrium from both unsaturated and supersaturated solutions. Pacer, Richard A. J. Chem. Educ. 1984, 61, 467.
Aqueous Solution Chemistry |
Solutions / Solvents |
Precipitation / Solubility |
Equilibrium |
UV-Vis Spectroscopy
|
The murky pool Perkins, Robert Using the reaction of aqueous silver nitrate with aqueous sodium sulfide to illustrate how one can correlate the terms soluble and insoluble with solubility product constants. Perkins, Robert J. Chem. Educ. 1984, 61, 383.
Solutions / Solvents |
Aqueous Solution Chemistry
|
The useless tea kettle Perkins, Robert If a 2.5 L kettle contains 125 g of calcium carbonate (boiler scale), how many times would the kettle have to be filled with distilled water to remove all of the deposits given the Ksp of calcium carbonate? Perkins, Robert J. Chem. Educ. 1984, 61, 383.
Precipitation / Solubility |
Acids / Bases |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Chemical storage of solar energy using an old color change demonstration Spears, L. Gene, Jr.; Spears, Larry G. The results of a student research project that could be used as an experiment to illustrate the potential of hydrates salts for solar energy storage. Spears, L. Gene, Jr.; Spears, Larry G. J. Chem. Educ. 1984, 61, 252.
Photochemistry |
Coordination Compounds |
Solutions / Solvents |
Aqueous Solution Chemistry |
Calorimetry / Thermochemistry
|
Photoelectrochemical solar cells McDevitt, John T. An introduction to photoelectrochemical cells and topics pertaining to solar energy conversion. McDevitt, John T. J. Chem. Educ. 1984, 61, 217.
Photochemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Semiconductors |
Applications of Chemistry
|
An analogy for the leveling effect Macomber, Roger S. Analogy to help students understand the leveling effect of certain solvents. Macomber, Roger S. J. Chem. Educ. 1984, 61, 128.
Acids / Bases |
Aqueous Solution Chemistry |
Solutions / Solvents |
Brønsted-Lowry Acids / Bases
|
Metal-ligand complexes-a calculation challenge Ramette, R. W. The purpose of this paper is to illustrate one of the most important experimental methods for studying complex equilibria and to present synthetic data as a challenge to the many sophisticated calculation procedure that enjoy various degrees of loyalty around the world. Ramette, R. W. J. Chem. Educ. 1983, 60, 946.
Equilibrium |
Metals |
Electrochemistry |
Oxidation / Reduction |
Coordination Compounds
|
Determination of ammonia in household cleaners: an instrumental analysis experiment Graham, Richard C.; DePew, Steven This popular experiment describes a procedure that is easily modified to determine quantitatively such analytes as ammonia in solution. Graham, Richard C.; DePew, Steven J. Chem. Educ. 1983, 60, 765.
Quantitative Analysis |
Titration / Volumetric Analysis |
Acids / Bases |
pH |
Consumer Chemistry |
Stoichiometry |
Solutions / Solvents
|
A simple and dramatic demonstration of overvoltage Bradford, John L.; Davis, Alvie L. This demonstration is easily visualized only for small groups, but can be displayed for a large audience by using an overhead projector. Bradford, John L.; Davis, Alvie L. J. Chem. Educ. 1983, 60, 674.
Potentiometry |
Electrochemistry |
Metals
|
Convenient relations for the estimation of bond ionicity in A-B type compounds Barbe, Jacques Calculating the electronegative differences between atoms does not always give an accurate prediction of bond strength. Barbe, Jacques J. Chem. Educ. 1983, 60, 640.
Noncovalent Interactions |
Metals |
Electrochemistry
|
A visual analogy for metallic deposition Hartwig, Dcio R.; Filho, Romeu C. Rocha Metallic deposition stoichiometry problems are difficult for students to visualize. A clever visual tool is explained in this article. Hartwig, Dcio R.; Filho, Romeu C. Rocha J. Chem. Educ. 1983, 60, 591.
Metals |
Electrochemistry |
Stoichiometry
|
Association of ions and fractional crystallization: a general chemistry experiment Scaife, Charles W. J.; Dubs, Richard L. The experiment in this article has been used in laboratories for non science majors and for inorganic chemistry. In both cases students attain a good understanding of what it taking place, how the various procedures affect actual concentrations of ions present, and why particular salts crystallize under certain conditions whereas others do not. Scaife, Charles W. J.; Dubs, Richard L. J. Chem. Educ. 1983, 60, 418.
Crystals / Crystallography |
Solutions / Solvents
|
Solubility and Ksp of calcium sulfate: a general chemistry laboratory experiment Sawyer, Albert K. The experiment shared in this note can be used to accompany lectures on solubility or chemical equilibrium. Sawyer, Albert K. J. Chem. Educ. 1983, 60, 416.
Solutions / Solvents |
Aqueous Solution Chemistry |
Equilibrium
|
A convenient salt bridge for electrochemical experiments in the general chemistry laboratory Howell, B. A.; Cobb, V. S.; Haaksma, R. A. These authors share some advice for a setting up a salt bridge. Howell, B. A.; Cobb, V. S.; Haaksma, R. A. J. Chem. Educ. 1983, 60, 273.
Electrochemistry
|
Understanding electrochemistry: Some distinctive concepts Faulkner, Larry R. This article addresses a few basic ideas about electrochemical systems that cause confusion among novice students. From State-of-the-Art Symposium: Electrochemistry, ACS meeting, Kansas City, 1982. Faulkner, Larry R. J. Chem. Educ. 1983, 60, 262.
Electrochemistry
|
Electrochemistry in the general chemistry curriculum Chambers, James Q. Students in introductory chemistry courses at large universities do not develop sufficient understanding of electrochemical phenomenon. From State-of-the-Art Symposium: Electrochemistry, ACS meeting, Kansas City, 1982. Chambers, James Q. J. Chem. Educ. 1983, 60, 259.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
A novel classification of concentration units MacCarthy, Patrick Concentration units can be a source of confusion for students. This article presents a treatment on this topic that may help students understand the differences between these units. MacCarthy, Patrick J. Chem. Educ. 1983, 60, 187.
Nomenclature / Units / Symbols |
Solutions / Solvents |
Aqueous Solution Chemistry
|
A practical application of molality Penrose, John F. The stoichiometry problem related in this note captures student interest. Penrose, John F. J. Chem. Educ. 1983, 60, 63.
Solutions / Solvents |
Stoichiometry
|
Does the N-solution problem measure student proficiency? Monts, David L.; Pickering, Miles An investigation to determine if the commonly used, N-solution, qualitative identification laboratory assessment problem assesses students' knowledge of descriptive chemistry. Monts, David L.; Pickering, Miles J. Chem. Educ. 1982, 59, 1032.
Solutions / Solvents |
Qualitative Analysis
|
Partition coefficients - A lecture demonstration Newton, Thomas A. The extraction of aqueous solutions of indophenol and its sodium salt with carbon tetrachloride and chloroform. Newton, Thomas A. J. Chem. Educ. 1982, 59, 973.
Separation Science |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Solar energy: Hydrogen and oxygen Farrell, John J. Demonstrating the electrolysis of water with solar energy. Farrell, John J. J. Chem. Educ. 1982, 59, 925.
Electrochemistry |
Applications of Chemistry
|
Reduction potentials and hydrogen overvoltage: An overhead projector demonstration Ramette, Richard W. Relates the scale of standard reduction potentials to the observed behavior of metals in their reactions with hydrogen ion to produce hydrogen gas. Ramette, Richard W. J. Chem. Educ. 1982, 59, 866.
Electrochemistry |
Metals |
Oxidation / Reduction
|
On the use of intravenous solutions to teach some principles of solution chemistry Shapiro, Irwin L. A series of laboratory periods are devoted to the chemistry of intravenous solution in a one-semeter course for nursing students. Shapiro, Irwin L. J. Chem. Educ. 1982, 59, 725.
Solutions / Solvents |
Nonmajor Courses |
Medicinal Chemistry
|
Demonstration of electrochemical cell properties by a simple, colorful oxidation-reduction experiment Hendricks, Lloyd J.; Williams, John T. The color of a solution close to an electrode is changed from that of the bulk solution to either of two contrasting colors, depending on whether the electrode reaction is a reduction or oxidation. Hendricks, Lloyd J.; Williams, John T. J. Chem. Educ. 1982, 59, 586.
Electrochemistry |
Oxidation / Reduction
|
Potential uses for broken or worn-out glass or combination electrodes Boring, Wayne C.; Winchell, Deborah L. When a glass or combination electrode is no longer useful for pH measurements, it can be used in at least two ways. Boring, Wayne C.; Winchell, Deborah L. J. Chem. Educ. 1982, 59, 425.
Laboratory Equipment / Apparatus |
Laboratory Management |
Electrochemistry
|
Notes from physics journals Smith, Douglas D. Solution with an index of refraction that matches that of Pyrex glass and a reverse cartesion diver. Smith, Douglas D. J. Chem. Educ. 1982, 59, 243.
Gases |
Solutions / Solvents
|
A demonstration model for immiscibility Hoffman, A. B. Uses Magic Sand to demonstrate various solubility principles. Hoffman, A. B. J. Chem. Educ. 1982, 59, 155.
Solutions / Solvents |
Aqueous Solution Chemistry |
Precipitation / Solubility
|
A simple, effective introduction to the Beer-Lambert relationships Bowman, Leo H. Demonstrates the realities of light absorbing phenomenon. Bowman, Leo H. J. Chem. Educ. 1982, 59, 155.
Spectroscopy |
Solutions / Solvents
|
Red cabbage and the electrolysis of water Skinner, James F. The demonstration profiled here has proven effective in bringing together concepts from acid-base chemistry and electrochemistry. Skinner, James F. J. Chem. Educ. 1981, 58, 1017.
Electrochemistry |
Water / Water Chemistry |
Acids / Bases
|
Red cabbage and the electrolysis of water Skinner, James F. The demonstration profiled here has proven effective in bringing together concepts from acid-base chemistry and electrochemistry. Skinner, James F. J. Chem. Educ. 1981, 58, 1017.
Electrochemistry |
Water / Water Chemistry |
Acids / Bases
|
More "quickies" Rosenberg, Milton H. Some quick, challenging questions that cover various areas of chemistry. Rosenberg, Milton H. J. Chem. Educ. 1981, 58, 994.
X-ray Crystallography |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Small things and large numbers Rosenberg, Milton H. Some challenging solubility problems are featured in this note. Rosenberg, Milton H. J. Chem. Educ. 1981, 58, 962.
Solutions / Solvents |
Equilibrium |
Chemometrics
|
Ksp made simple Buss, Donald E. Students often have a hard time understanding solubility products conceptually. The author provides appropriate questions that can better scaffold understanding. Buss, Donald E. J. Chem. Educ. 1981, 58, 958.
Equilibrium |
Solutions / Solvents
|
Theory and practical use of an hydrogen electrode in aqueous-organic media Letellier, P.; Millot, F.; Baffier, N.; Combes, R. These authors make a case for a greater use of hydrogen electrodes for acidity measurements in student laboratory courses. Letellier, P.; Millot, F.; Baffier, N.; Combes, R. J. Chem. Educ. 1981, 58, 576.
Acids / Bases |
Electrochemistry |
Oxidation / Reduction
|
Solubility and complex ion equilibria of silver(I) species in aqueous solution Shakhashiri, Bassam Z.; Dirreen, Glen E.; Juergens, Fred The sequential formation of precipitates and complex ions is used to demonstrate how the solubility of silver(I) compounds is related to Ksp values. Shakhashiri, Bassam Z.; Dirreen, Glen E.; Juergens, Fred J. Chem. Educ. 1980, 57, 813.
Aqueous Solution Chemistry |
Precipitation / Solubility |
Solutions / Solvents
|
An acid or a base? Uriarte, Richard J. Does a diluted acid remain acidic? Uriarte, Richard J. J. Chem. Educ. 1980, 57, 806.
Acids / Bases |
pH |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Synthesis and decomposition of ZnI2 Walker, Noojin Illustrates direct combination, decomposition, the effect of a catalyst, recrystallization of sublimed I2, and electrolysis. Walker, Noojin J. Chem. Educ. 1980, 57, 738.
Synthesis |
Reactions |
Catalysis |
Electrochemistry
|
An approximate determination of Avogadro's constant Szll, Thomas; Dennis, David; Jouas, Jean-Pierre; Wong, Mabel An experiment to determine a value for Avogadro's number by determining the relationship between the number of electrons flowing through an acidified solution of water and the number of moles of electrons which reduce hydrogen ions to produce hydrogen gas. Szll, Thomas; Dennis, David; Jouas, Jean-Pierre; Wong, Mabel J. Chem. Educ. 1980, 57, 735.
Stoichiometry |
Electrochemistry |
Aqueous Solution Chemistry
|
Mole fraction analogies DeLorenzo, Ron An analogy to help students solve concentration problems. DeLorenzo, Ron J. Chem. Educ. 1980, 57, 733.
Stoichiometry |
Chemometrics |
Solutions / Solvents
|
Carbon tetrachloride substitute Wynn, Charles M. Substitution of n-hexane for carbon tetrachloride. Wynn, Charles M. J. Chem. Educ. 1980, 57, 728.
Toxicology |
Laboratory Management |
Solutions / Solvents
|
Experiments for display (Corridor demonstration) Letcher, T. M.; Orchard, S. W. The effect of heat on the color of cobalt(II) chloride water-alcohol solution. Refluxing solutions of different compositions. Letcher, T. M.; Orchard, S. W. J. Chem. Educ. 1980, 57, 667.
Solutions / Solvents |
Aqueous Solution Chemistry
|
A "road map" problem for freshman chemistry students Burness, James H. Question suitable for a take-home type of exam. Burness, James H. J. Chem. Educ. 1980, 57, 647.
Gases |
Solutions / Solvents |
Stoichiometry |
Nomenclature / Units / Symbols |
Chemometrics
|
Apple dunking O'Connor, Rod Question regarding the ratio between ions of p-nitrophenylhydrazone in reducing the pH of basic effluent. O'Connor, Rod J. Chem. Educ. 1980, 57, 598.
Acids / Bases |
Aqueous Solution Chemistry |
Solutions / Solvents |
pH |
Industrial Chemistry
|
Electroforming: An improvised experiment on electroplating Gorodetsky, Malka; Singerman, Ammon The difference between electroplating and electroforming, and an experiment in the latter. Gorodetsky, Malka; Singerman, Ammon J. Chem. Educ. 1980, 57, 514.
Electrochemistry |
Industrial Chemistry
|
Cobalt complexes in equilibrium Ophardt, Charles E. This equilibrium illustrates the application of LeChatelier's principle to concentration effects. Ophardt, Charles E. J. Chem. Educ. 1980, 57, 453.
Equilibrium |
Coordination Compounds |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Illustrating chemical concepts through food systems: Introductory chemistry experiments Chamber, IV, E.; Setser, C. S. Illustrating the vaporization of liquids, reaction rates, adsorption, properties of solutions, colloidal dispersions, suspensions, and hydrogen ion concentration using foods. Chamber, IV, E.; Setser, C. S. J. Chem. Educ. 1980, 57, 312.
Food Science |
Applications of Chemistry |
Liquids |
Phases / Phase Transitions / Diagrams |
Solutions / Solvents |
Colloids |
Acids / Bases
|
Qualitative analysis, without sulfide ion, of selected cations Rathnamma, Dasara V. Qualitative analysis of selected 11 cations can be accomplished without the use of sulfide. Rathnamma, Dasara V. J. Chem. Educ. 1980, 57, 287.
Qualitative Analysis |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Artifacts and the Electromotive Series Mickey, Charles D. The chemistry of metals and its application to archeology. Mickey, Charles D. J. Chem. Educ. 1980, 57, 275.
Electrochemistry |
Metals |
Applications of Chemistry |
Metallurgy |
Reactions
|
Electrical energy from cells - A corridor demonstration Gilbert, George L. A display that demonstrates the charge and discharge of a solar cell, fuel cell, and storage cell. Gilbert, George L. J. Chem. Educ. 1980, 57, 216.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
The failed experiment as a teaching aid Frugoni, Juan A Coch; Figueira, Alvaro Rocha Intentionally using faulty experiments to increase student interest and participation; and example of a failed experiment regarding Faraday's laws of electrolysis is offered. Frugoni, Juan A Coch; Figueira, Alvaro Rocha J. Chem. Educ. 1980, 57, 179.
Electrochemistry
|
A substitute for mercury electrode contacts Bradford, John L. Substituting steel wool or copper turnings for mercury as electrode contacts. Bradford, John L. J. Chem. Educ. 1980, 57, 159.
Laboratory Equipment / Apparatus |
Electrochemistry
|
Appetizing colloids Riley, John T. Two examples of colloidal dispersions: the formation of foam upon mixing a solution of aluminum sulfate with a solution of egg albumin and sodium bicarbonate, and the formation of a gel upon mixing ethanol with a saturated solution of calcium acetate. Riley, John T. J. Chem. Educ. 1980, 57, 153.
Colloids |
Solutions / Solvents
|
Crystallization of sodium acetate Hiegel, Gene A. Procedure for preparing a supersaturated solution of sodium acetate and crystallizing it. Hiegel, Gene A. J. Chem. Educ. 1980, 57, 152.
Crystals / Crystallography |
Solutions / Solvents |
Aqueous Solution Chemistry |
Precipitation / Solubility
|
"To sink or swim" O'Connor, Rod A problem regarding the maximum water hardness that can be permitted in a swimming pool if it is desired to avoid calcite formation given the carbonate ion concentration. [Debut] O'Connor, Rod J. Chem. Educ. 1980, 57, 151.
Acids / Bases |
Aqueous Solution Chemistry |
Equilibrium |
Solutions / Solvents
|
On the misuse of Le Châtelier's principle for the prediction of the temperature dependence of the solubility of salts Bodner, George M. Explores why Le Châtelier's principle often fails to predict the temperature dependence of the solubility of salts. Bodner, George M. J. Chem. Educ. 1980, 57, 117.
Equilibrium |
Precipitation / Solubility |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Travelling Waves of Chemical Activity in the Zaikin-Zhabotinskii-Winfree Reagent Field, Richard J; Winfree, Arthur T. An overhead projector demonstration. Field, Richard J; Winfree, Arthur T. J. Chem. Educ. 1979, 56, 754.
Crystals / Crystallography |
Solutions / Solvents |
Aqueous Solution Chemistry |
Precipitation / Solubility
|
A copper mirror: Electroless plating of copper Hill, John W.; Foss, Dennis L.; Scott, Lawrence W. An experiment or demonstration of the electroless plating of copper in a watch glass. Hill, John W.; Foss, Dennis L.; Scott, Lawrence W. J. Chem. Educ. 1979, 56, 752.
Electrochemistry
|
Corrosion: A Waste of energy J. Chem. Educ. Staff Thermodynamics and electrochemical aspects of corrosion, and inhibition of the corrosion process. J. Chem. Educ. Staff J. Chem. Educ. 1979, 56, 673.
Oxidation / Reduction |
Applications of Chemistry |
Metals |
Thermodynamics |
Electrochemistry
|
The precipitation of ferrous hydroxide: A lecture demonstration Lau, O. W. This demonstration can illustrate such topics as the solubility of ionic compounds, electrode potentials of transition elements and their modification by formation of either an insoluble compound of a complex ion, and mixed valence compounds. Lau, O. W. J. Chem. Educ. 1979, 56, 474.
Precipitation / Solubility |
Solutions / Solvents |
Aqueous Solution Chemistry |
Transition Elements |
Metals |
Oxidation / Reduction |
Oxidation State
|
Isoenzymes Daugherty, N. A. The separation, identification, and measurement of isoenzymes is an appropriate topic for a special lecture in general chemistry. Daugherty, N. A. J. Chem. Educ. 1979, 56, 442.
Enzymes |
Proteins / Peptides |
pH |
Electrophoresis |
Separation Science |
Electrochemistry |
Applications of Chemistry
|
Determination of solution enthalpy: An easy and simple method Karunakaran, K. A method that does not involve the preparation and analysis of saturated solutions at different temperatures. Karunakaran, K. J. Chem. Educ. 1979, 56, 389.
Solutions / Solvents |
Calorimetry / Thermochemistry |
Laboratory Management
|
The electrophoresis of indicators: An analogy to isoenzyme separation Daugherty, N. A.; Lavallee, D. K. A lecture demonstration that illustrates the principles involved in the separation of isoenzymes but avoids the problems inherent in isoenzyme separations. Daugherty, N. A.; Lavallee, D. K. J. Chem. Educ. 1979, 56, 353.
Electrochemistry |
Electrophoresis |
Dyes / Pigments |
Enzymes |
Separation Science
|
A simple and inexpensive solar energy experiment Evans, J. H.; Pedersen, L. G. Uses solid state technology to demonstrate the direct generation of electricity and the electrochemical generation of hydrogen. Evans, J. H.; Pedersen, L. G. J. Chem. Educ. 1979, 56, 339.
Solid State Chemistry |
Semiconductors |
Electrochemistry
|
Formation and dissolution of precipitates Nogar, N. S.; Jalenak, W. A. Using the scattering of a laser beam to detect the presence of particles suspended in solution. Nogar, N. S.; Jalenak, W. A. J. Chem. Educ. 1979, 56, 267.
Precipitation / Solubility |
Solutions / Solvents |
Lasers
|
Colorimetric analysis for salicylate in urine: An experiment for nursing chemistry Cavanaugh, Margaret A.; Bambenek, Mark A. The iron-salicylate system provides a chemistry experiment is described here and is suitable for students majoring in nursing. Cavanaugh, Margaret A.; Bambenek, Mark A. J. Chem. Educ. 1978, 55, 464.
Nonmajor Courses |
Bioanalytical Chemistry |
Solutions / Solvents |
Quantitative Analysis |
Spectroscopy |
UV-Vis Spectroscopy |
Amines / Ammonium Compounds
|
Electroplating of polyethylene Gorodetsky, Malka In the process of reorganizing a first-year chemistry laboratory for engineering students the authors have developed experiments that reproduce the approach in solving industrial chemical problems. Gorodetsky, Malka J. Chem. Educ. 1978, 55, 66.
Industrial Chemistry |
Electrochemistry |
Oxidation / Reduction |
Metals
|
Case of the unlabeled bottles Smith, Douglas D. Students are to determine the contents of a series of unlabelled bottles. Smith, Douglas D. J. Chem. Educ. 1977, 54, 701.
Qualitative Analysis |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Questions [and] Answers Campbell, J. A. 330-333. Four questions and their answers; includes comments made by readers on earlier questions 130, 153, 154, 171, 172, 181. Campbell, J. A. J. Chem. Educ. 1977, 54, 678.
Enrichment / Review Materials |
Atmospheric Chemistry |
Applications of Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Metals |
pH
|
Another look at our teaching methods. Pros and cons of the silent demonstration Woodburn, John H. Analysis of a "silent demonstration" involving the formation of a precipitate and why the demonstration may or may not have been effective in helping students understand the intended concept. Woodburn, John H. J. Chem. Educ. 1977, 54, 627.
Aqueous Solution Chemistry |
Solutions / Solvents |
Precipitation / Solubility
|
Electrochemical demonstration: Motor driven by a simple galvanic cell Skinner, J. F. A Zn / Zn 2+ Cu 2+ / Cu (Daniel) cell operates a small motor. Skinner, J. F. J. Chem. Educ. 1977, 54, 619.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry
|
Lecture demonstration digital multimeter Myers, Gardiner H.; Dugan, Robert J. Plans for a Lecture Demonstration Digital Multimeter used to measure and display electric potential, current, temperature, pressure, and pH. Myers, Gardiner H.; Dugan, Robert J. J. Chem. Educ. 1977, 54, 495.
Laboratory Equipment / Apparatus |
pH |
Electrochemistry
|
The Electrolysis of water - Fuel cell reactions Feinstein, H. I.; Gale, Vernon Design and operation of a fuel cell that operates an LED or small electric motor. Feinstein, H. I.; Gale, Vernon J. Chem. Educ. 1977, 54, 432.
Electrochemistry
|
Silver ion in water purification: A follow-up Quane, Denis Applying a previous idea on the possible use of silver ion in water purification to teaching the concept of Ksp. Quane, Denis J. Chem. Educ. 1977, 54, 381.
Aqueous Solution Chemistry |
Water / Water Chemistry |
Equilibrium |
Solutions / Solvents
|
Hydrogen bonding and heat of solution Friedman, Norman An experiment that clearly illustrates the role of hydrogen bond formation and its effect on the heat of solution. Friedman, Norman J. Chem. Educ. 1977, 54, 248.
Hydrogen Bonding |
Calorimetry / Thermochemistry |
Solutions / Solvents
|
A simple lab demonstrating energy transformation Miller, Daniel W. Building and investigating a sulfuric acid / lead electrolytic cell. Miller, Daniel W. J. Chem. Educ. 1977, 54, 245.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Thermodynamics
|
Selective solubility: "Like dissolves like" Smith, Wayne L. Azobenzene is a better analog of DDT than iodine in demonstrating the pesticide's solubility in fatty tissue. Smith, Wayne L. J. Chem. Educ. 1977, 54, 228.
Precipitation / Solubility |
Solutions / Solvents |
Lipids
|
Simple practical lab test for freshman students Jones, Mark M. Uses the preparation of a solution of designated molarity as a test of student competence; the solution is evaluated using its optical density. Jones, Mark M. J. Chem. Educ. 1977, 54, 178.
Solutions / Solvents
|
On mole fractions in equilibrium constants Delaney, C. M.; Nash, Leonard K. Proposes a hybrid equilibrium constant for use in introductory chemistry courses. Delaney, C. M.; Nash, Leonard K. J. Chem. Educ. 1977, 54, 151.
Equilibrium |
Stoichiometry |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Chemical equilibrium Burke, Barbara A. Demonstrates the equilibrium between blue CuSO4 and green K2(CuBr4) on an overhead projector. Burke, Barbara A. J. Chem. Educ. 1977, 54, 29.
Equilibrium |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Flashy solutions Riley, John T. Demonstrations using universal indicator. Riley, John T. J. Chem. Educ. 1977, 54, 29.
Solutions / Solvents |
Acids / Bases |
Dyes / Pigments
|
The solubility of CaSO4: An ion exchange-complexometric titration experiment for the freshman laboratory Koubek, Edward This lab may be used to introduce the student to two important areas of chemistry with the added advantage that one method serves as a direct check on the other. Koubek, Edward J. Chem. Educ. 1976, 53, 254.
Titration / Volumetric Analysis |
Solutions / Solvents |
Ion Exchange
|
Antichap lipstick and nonbonded interactions. A nonscience majors laboratory experience Most, Clark, Jr. A laboratory with real life applications helps nonscience majors learn about solubility. Most, Clark, Jr. J. Chem. Educ. 1976, 53, 194.
Solutions / Solvents |
Applications of Chemistry |
Consumer Chemistry |
Nonmajor Courses
|
Chromatography on chalk Wollrab, Adalbert Describes how a variety of mixtures can be separated using a piece of chalk. Wollrab, Adalbert J. Chem. Educ. 1975, 52, 809.
Chromatography |
Separation Science |
Dyes / Pigments |
Solutions / Solvents
|
Ksp experiment: The solubility product for barium hydroxide Reynolds, John P. Two procedures for determining the solubility product of barium hydroxide and the effect of temperature on Ksp. Reynolds, John P. J. Chem. Educ. 1975, 52, 521.
Precipitation / Solubility |
Solutions / Solvents |
Titration / Volumetric Analysis
|
Compact compacts Bier, C. J.; Schiller, Joseph E.; Hengeveld, Frank W.; Smith, Herbert L.; Karnes, John P. Exercises in distillation and the law of multiple proportions; the "Men and Molecules" radio program; and assessing solution concentrations. Bier, C. J.; Schiller, Joseph E.; Hengeveld, Frank W.; Smith, Herbert L.; Karnes, John P. J. Chem. Educ. 1975, 52, 519.
Solutions / Solvents
|
Deflection of falling solvents by an electric field Brindle, I. D.; Tomlinson, R. H. Using the deflection of a falling liquid by an electrically charged rod to demonstrate the polarity of molecules is misleading at best. Brindle, I. D.; Tomlinson, R. H. J. Chem. Educ. 1975, 52, 382.
Molecular Properties / Structure |
Electrochemistry
|
Molar solubility calculations and the control equilibrium Chaston, S. H. H. The Control-Equilibrium method uses as its starting point a precise procedure for obtaining the equilibrium that accounts for the bulk of the decomposition of starting materials. Chaston, S. H. H. J. Chem. Educ. 1975, 52, 206.
Solutions / Solvents |
Chemometrics |
Equilibrium
|
Mysterious stoichiometry Bowman, L. H.; Shull, C. M. The student's task in this experiment is to determine the composition of a compound of chromium produced in an electrolytic cell. Bowman, L. H.; Shull, C. M. J. Chem. Educ. 1975, 52, 186.
Titration / Volumetric Analysis |
Quantitative Analysis |
Stoichiometry |
Aqueous Solution Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
A lab to motivate weak students Loveridge, Glen A lab activity on the electrolysis of water. [Debut] Loveridge, Glen J. Chem. Educ. 1975, 52, 102.
Electrochemistry
|
A lab to motivate weak students Loveridge, Glen A lab activity on the electrolysis of water. [Debut] Loveridge, Glen J. Chem. Educ. 1975, 52, 102.
Electrochemistry
|
Electrochemistry in organisms. Electron flow and power output Chirpich, Thomas P. Electrochemical calculations at an elementary level can be readily applied to living organisms and generate further student interest in electrochemistry. Chirpich, Thomas P. J. Chem. Educ. 1975, 52, 99.
Electrochemistry |
Bioenergetics
|
A spectrophotometric determination of fluoride adapted for the freshman laboratory Daines, Terri L.; Morse, Karen W. In this experiment the student determines the fluoride ion concentration of a sodium fluoride solution, which they can do with high precision and accuracy. Daines, Terri L.; Morse, Karen W. J. Chem. Educ. 1974, 51, 680.
Quantitative Analysis |
Solutions / Solvents |
Spectroscopy
|
Corrosion Slabaugh, W. H. The topic of corrosion extends several basic concepts of electrochemistry with which students can relate. This article outlines: standard electrochemical potentials; corrosion of iron' corrosion of aluminum; application of electrochemical concepts; and ideas for some experiments. Slabaugh, W. H. J. Chem. Educ. 1974, 51, 218.
Oxidation / Reduction |
Consumer Chemistry |
Electrochemistry
|
Reference electrodes Caton, Roy D., Jr. Examines reference electrodes, including both aqueous and nonaqueous reference electrodes. Caton, Roy D., Jr. J. Chem. Educ. 1973, 50, A571.
Electrochemistry |
Instrumental Methods
|
Racing car batteries Plumb, Robert C.; Combs, R. E.; Connelly, J. M. Illustrating the Nernst equation and Faraday's laws using the example of the silver-zinc batteries used in racing cars. Plumb, Robert C.; Combs, R. E.; Connelly, J. M. J. Chem. Educ. 1973, 50, 857.
Applications of Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Questions [and] Answers Campbell, J. A. Six questions that can be answered with the application of basic chemical principles. Campbell, J. A. J. Chem. Educ. 1973, 50, 847.
Enrichment / Review Materials |
Metals |
Plant Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
A semimicro salt bridge McCullough, Thomas, C. S. C. Using capillary U-tubes as semimicro salt bridges. McCullough, Thomas, C. S. C. J. Chem. Educ. 1973, 50, 781.
Electrochemistry |
Microscale Lab |
Laboratory Equipment / Apparatus
|
Demonstration of solubility of "immiscible" fluids Koob, R. D.; Tallman, D. E. Demonstrating that hexane is miscible in water. Koob, R. D.; Tallman, D. E. J. Chem. Educ. 1973, 50, 724.
Solutions / Solvents |
Precipitation / Solubility |
Water / Water Chemistry |
Alkanes / Cycloalkanes
|
A stabilized linear direct reading conductance apparatus. The solvolysis of t-butyl chloride Cyr, T.; Prudhomme, J.; Zador, M. A simple ac conductivity apparatus for experiments in chemical kinetics is described; the instrument is sufficiently reliable that it can be used by first year students and assembled in a few hours. Cyr, T.; Prudhomme, J.; Zador, M. J. Chem. Educ. 1973, 50, 572.
Laboratory Equipment / Apparatus |
Instrumental Methods |
Electrochemistry |
Kinetics
|
Charge and mass of the electron. An introductory experiment Thompson, C. C. Procedure for the electrolytic determination of the charge and mass of the electron requiring only the use of a balance and the careful recording of data. Thompson, C. C. J. Chem. Educ. 1973, 50, 435.
Atomic Properties / Structure |
Electrochemistry |
Metals
|
The equilibrium between a solid solution and an aqueous solution of its ions Berndt, Alan F.; Stearns, Robert I. It is the purpose of this paper to present the equations that describe the equilibrium between solid solutions and their ions and to outline methods for their derivation. Berndt, Alan F.; Stearns, Robert I. J. Chem. Educ. 1973, 50, 415.
Equilibrium |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Questions [and] Answers Campbell, J. A. Six questions requiring an application of chemical principles. Campbell, J. A. J. Chem. Educ. 1973, 50, 281.
Enrichment / Review Materials |
Lipids |
Gases |
Electrochemistry
|
Selected properties of selected solvents Nilles, George P.; Schuetz, Robert D. Selected properties of fifty common solvents. Nilles, George P.; Schuetz, Robert D. J. Chem. Educ. 1973, 50, 267.
Physical Properties |
Solutions / Solvents
|
Dissolved oxygen determination Berger, Toby E. Details regarding the cited procedure. Berger, Toby E. J. Chem. Educ. 1973, 50, 160.
Water / Water Chemistry |
Solutions / Solvents
|
Notes on determination of dissolved oxygen Sommers, Raymond A. Simplifications in the referenced procedure that make it more suitable for the introductory laboratory. Sommers, Raymond A. J. Chem. Educ. 1973, 50, 160.
Water / Water Chemistry |
Solutions / Solvents
|
Free energies of formation measurements on solid-state electrochemical cells Rollino, J. A.; Aronson, S. This experiment demonstrates in a direct fashion the relationship between the Gibbs free energy of formation of an ionic solid and the emf of an electrochemical cell. Rollino, J. A.; Aronson, S. J. Chem. Educ. 1972, 49, 825.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Solid State Chemistry |
Organometallics
|
A simple method for testing the adhesion of electrodeposits Ajuria-Garza, Sergio A simple test that can be used with low-adhesion electrodeposits involves attempting to peel off the deposit with a pressure-sensitive adhesive tape. Ajuria-Garza, Sergio J. Chem. Educ. 1972, 49, 706.
Electrochemistry
|
A simple method for testing the adhesion of electrodeposits Ajuria-Garza, Sergio A simple test that can be used with low-adhesion electrodeposits involves attempting to peel off the deposit with a pressure-sensitive adhesive tape. Ajuria-Garza, Sergio J. Chem. Educ. 1972, 49, 706.
Electrochemistry
|
Definition of standard states Lukens, David C. A suggested sequence of definitions for the standard state. Lukens, David C. J. Chem. Educ. 1972, 49, 654.
Thermodynamics |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Edison's chemical meter Vanderbilt, Byron M. Thomas Edison invented the chemical meter to measure the rate at which electricity was being used. Vanderbilt, Byron M. J. Chem. Educ. 1972, 49, 626.
Applications of Chemistry |
Electrochemistry
|
Durable chrome plating Plumb, Robert C.; Saur, Roger L. How chrome plating works to protect bumpers from corrosion. Plumb, Robert C.; Saur, Roger L. J. Chem. Educ. 1972, 49, 626.
Electrochemistry |
Oxidation / Reduction |
Applications of Chemistry |
Kinetics
|
Durable chrome plating Plumb, Robert C.; Saur, Roger L. How chrome plating works to protect bumpers from corrosion. Plumb, Robert C.; Saur, Roger L. J. Chem. Educ. 1972, 49, 626.
Electrochemistry |
Oxidation / Reduction |
Applications of Chemistry |
Kinetics
|
Electrochemical reactions in batteries. Emphasizing the MnO2 cathode of dry cells Kozawa, Akiya; Powers, R. A. The purpose of this article is to make a simplified, but current presentation of the electrochemical reactions in batteries, particularly those of the manganese dioxide cathode of dry cells. Kozawa, Akiya; Powers, R. A. J. Chem. Educ. 1972, 49, 587.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Applications of Chemistry
|
Questions [and] Answers Campbell, J. A. Six questions requiring the application of basic principles of chemistry. Campbell, J. A. J. Chem. Educ. 1972, 49, 538.
Enrichment / Review Materials |
Applications of Chemistry |
Electrochemistry |
Astrochemistry |
Stoichiometry |
Metals
|
The presentation of electrode potentials using an energy level diagram Pinfold, T. A. The tabular form in which standard electrode potentials are usually presented often leads to confusion that can be diminished by representing the electrochemical series on an energy diagram like that provided. Pinfold, T. A. J. Chem. Educ. 1972, 49, 506.
Electrochemistry |
Oxidation / Reduction |
Electrolytic / Galvanic Cells / Potentials
|
An inexpensive DC ohmmeter Getzin, Donald R. Design for an inexpensive DC ohmmeter. Getzin, Donald R. J. Chem. Educ. 1972, 49, 442.
Laboratory Equipment / Apparatus |
Electrochemistry
|
Dissolved oxygen. A relevant experiment for the introductory laboratory Stagg, William R. Students measure the dissolved oxygen content of water from several natural sources as well as the change in solubility with temperature. Stagg, William R. J. Chem. Educ. 1972, 49, 427.
Water / Water Chemistry |
Oxidation / Reduction |
Quantitative Analysis |
Solutions / Solvents |
Precipitation / Solubility |
Gases
|
Biogalvanic cells Plumb, Robert C.; Hobey, W. D. Explains the chemistry behind the potential development of an electrochemical cell that generates electricity using inert electrodes implanted in bodily fluids. Plumb, Robert C.; Hobey, W. D. J. Chem. Educ. 1972, 49, 413.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
A visual demonstration of preferential absorption Folster, Harry G. The preferential absorption of one solute from a mixture of solutes can be demonstrated by a simple and inexpensive technique in which the separation is visually evident. Folster, Harry G. J. Chem. Educ. 1972, 49, 322.
Transport Properties |
Solutions / Solvents
|
Solubility of lead bromide in nitrate media. A study of ionic interactions Cooper, J. N. Students are asked to determine, as a class, the solubility of lead bromide at a fixed temperature in solutions covering a range of known sodium nitrate concentrations. Cooper, J. N. J. Chem. Educ. 1972, 49, 282.
Periodicity / Periodic Table |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Density gradients in chemistry teaching Miller, P. J. Outlines experiments in which a density gradient may be used to advantage, including the analysis of organic compounds, aqueous solutions, binary mixtures of organic compounds, solids, and solvent extractions. Miller, P. J. J. Chem. Educ. 1972, 49, 278.
Aqueous Solution Chemistry |
Solids |
Physical Properties |
Solutions / Solvents
|
Precipitation of lead chromate from homogeneous solution. A lecture demonstration or laboratory experiment Ramette, Richard W. Both the "conventional precipitation" and the precipitation from homogeneous solution are done simultaneously so that the striking differences in chemistry, appearance, and precipitate produced can be compared. Ramette, Richard W. J. Chem. Educ. 1972, 49, 270.
Precipitation / Solubility |
Solutions / Solvents
|
Electrographic analysis of the iron triad. A general chemistry experiment Feinstein, H. I. Electrochemical tests for iron, cobalt, and nickel. Feinstein, H. I. J. Chem. Educ. 1972, 49, 268.
Electrochemistry |
Qualitative Analysis
|
A general chemistry experiment for the blind Hiemenz, Paul C.; Pfeiffer, EIizabeth Presents a method for weighing and a conductometric titration that relies on an audio signal. Hiemenz, Paul C.; Pfeiffer, EIizabeth J. Chem. Educ. 1972, 49, 263.
Minorities in Chemistry |
Titration / Volumetric Analysis |
Electrochemistry
|
Computer evaluation of titrations by Gran's method. An analytical chemistry experiment MacDonald, Timothy J.; Barker, Barbara J.; Caruso, Joseph A. A computer program has been developed for the evaluation of potentiometric redox titration data by Gran's method. MacDonald, Timothy J.; Barker, Barbara J.; Caruso, Joseph A. J. Chem. Educ. 1972, 49, 200.
Titration / Volumetric Analysis |
Quantitative Analysis |
Oxidation / Reduction |
Electrochemistry |
Acids / Bases
|
Using alligation alternate to solve composition problems Mancott, Anatol Problems involving the composition of mixtures may be solved by using the relatively obscure method of "alligation alternate" in lieu of the standard algebraic procedure with no loss in accuracy; includes five examples. Mancott, Anatol J. Chem. Educ. 1972, 49, 57.
Chemometrics |
Solutions / Solvents |
Isotopes
|
The effervescence of ocean surf Plumb, Robert C.; Blanchard, Duncan C.; Bilofsky, Howard S.; Bridgman, Wilbur B. A pure liquid will not foam, but all true solutions will, as dictated by the fundamental concepts of surface thermodynamics enunciated by Gibbs. Plumb, Robert C.; Blanchard, Duncan C.; Bilofsky, Howard S.; Bridgman, Wilbur B. J. Chem. Educ. 1972, 49, 29.
Water / Water Chemistry |
Aqueous Solution Chemistry |
Gases |
Solutions / Solvents |
Thermodynamics
|
When your car rusts out Knockemus, Ward Explains the rusting of a car by considering electrochemical corrosion and the Nernst equation. Knockemus, Ward J. Chem. Educ. 1972, 49, 29.
Electrochemistry |
Oxidation / Reduction |
Applications of Chemistry |
Reactions
|
Entropy Makes Water Run Uphill - in Trees Stevenson, Philip E. Explains how Sequoias over 300 feet tall can draw water up to their topmost leaves. Stevenson, Philip E. J. Chem. Educ. 1971, 48, 837.
Applications of Chemistry |
Thermodynamics |
Plant Chemistry |
Membranes |
Transport Properties |
Solutions / Solvents
|
Miscellanea No. 6 Eberhardt, W. H. A collection of clarified, underemphasized, and misunderstood topics, including cell electromotive force and disproportionate reactions; partially miscible liquids and upper consolute temperatures; enthalpy and free energy of formation; and magnetic moment. Eberhardt, W. H. J. Chem. Educ. 1971, 48, 829.
Electrochemistry |
Solutions / Solvents |
Thermodynamics |
Magnetic Properties
|
Size of a molecule. Or what's in a shape? Demchik, Michael J.; Demchik, Virginia C. The authors describe an experiment which helps students understand why oleic acid is essentially insoluble in water. Demchik, Michael J.; Demchik, Virginia C. J. Chem. Educ. 1971, 48, 770.
Lipids |
Molecular Properties / Structure |
Molecular Modeling |
Physical Properties |
Solutions / Solvents |
Fatty Acids
|
Polywater. A lesson and opportunity in science Christian, P. A.; Berka, L. H. The authors present an intriguing observation and offer outlines of some possible studies that can be undertaken in any adequately equipped high school or college chemistry laboratory. Christian, P. A.; Berka, L. H. J. Chem. Educ. 1971, 48, 667.
Water / Water Chemistry |
Solutions / Solvents
|
Beginning chemistry can be relevant Corwin, James F. The continuing criticism offered by students of the science that the present day courses are not relevant to contemporary problems. This can be answered in part by a laboratory program based on environmental problems. Corwin, James F. J. Chem. Educ. 1971, 48, 522.
Acids / Bases |
Solutions / Solvents |
Student-Centered Learning
|
Le Chtelier's principles - Conductivity of solutions Kasimer, Philip Observing conductivity of a dilute solution of glacial acetic acid before and after the addition of a magnesium ribbon. Kasimer, Philip J. Chem. Educ. 1970, 47, A439.
Equilibrium |
Electrochemistry |
Aqueous Solution Chemistry
|
Miscellaneous Alyea, Hubert N. 13 demonstrations, including electrophoresis, electrolysis, corrosion inhibition, endothermic and exothermic reactions, crystals and crystallization, reactions with sodium, and the kinetics of H2O2 decomposition. Alyea, Hubert N. J. Chem. Educ. 1970, 47, A387.
Electrophoresis |
Dyes / Pigments |
Electrochemistry |
Oxidation / Reduction |
Calorimetry / Thermochemistry |
Phases / Phase Transitions / Diagrams |
Reactions |
Crystals / Crystallography |
Kinetics
|
Some "real life" applications of solubility: Iron, iron everywhere but not a drop to drink Brasted, Robert C. Although Hawaiian pineapples grow in red soils whose iron composition may exceed 20%, they starve for iron because it is in an insoluble form; also considers applications of the insolubility of other transition metals. Brasted, Robert C. J. Chem. Educ. 1970, 47, 634.
Applications of Chemistry |
Solutions / Solvents |
Aqueous Solution Chemistry |
Precipitation / Solubility |
Plant Chemistry |
Agricultural Chemistry |
Metals |
Transition Elements |
Oxidation State
|
Some "real life" applications of solubility: Iron, iron everywhere but not a drop to drink Brasted, Robert C. Although Hawaiian pineapples grow in red soils whose iron composition may exceed 20%, they starve for iron because it is in an insoluble form; also considers applications of the insolubility of other transition metals. Brasted, Robert C. J. Chem. Educ. 1970, 47, 634.
Applications of Chemistry |
Solutions / Solvents |
Aqueous Solution Chemistry |
Precipitation / Solubility |
Plant Chemistry |
Agricultural Chemistry |
Metals |
Transition Elements |
Oxidation State
|
General chemistry experiments: Six short, inexpensive procedures Heit, M. L.; Dauphinee, G. A. These simple experiments involve conductivity comparisons of derivatives of the acetate ion, paper chromatography, sublimation, the effect of temperature on equilibrium, the detection of I-, and an example of an equilibrium shift. Heit, M. L.; Dauphinee, G. A. J. Chem. Educ. 1970, 47, 532.
Electrochemistry |
Chromatography |
Phases / Phase Transitions / Diagrams |
Equilibrium |
Oxidation / Reduction
|
Chemical queries. Especially for introductory chemistry teachers Young, J. A.; Malik, J. G.; Strong, Laurence E. (1) What evidence, understandable and acceptable to students, do most teachers cite to describe the transfer of charge from one electrode to another in the direct current electrolysis of an electrolyte solution? (2) What is a compound? - answer by Strong. (3) What is a molecule? - answer by Strong. Young, J. A.; Malik, J. G.; Strong, Laurence E. J. Chem. Educ. 1970, 47, 523.
Electrochemistry |
Aqueous Solution Chemistry |
Stoichiometry |
Molecular Properties / Structure
|
Car Won't Start? Nash, Leonard K.; Plumb, Robert C. Examines the questions, "Does the voltage of a battery drop with temperature" and "Does the ability of a battery to deliver current decrease with temperature?" Nash, Leonard K.; Plumb, Robert C. J. Chem. Educ. 1970, 47, 382.
Electrochemistry |
Thin Layer Chromatography |
Applications of Chemistry |
Consumer Chemistry |
Electrolytic / Galvanic Cells / Potentials
|
A demonstration experiment on partial molar volumes Coch, Juan A.; Lopez, Valentin The partial molar volume of trichloroacetic acid can be determined by measuring the increase in volume when TCA is dissolved in water at constant temperature and pressure. Coch, Juan A.; Lopez, Valentin J. Chem. Educ. 1970, 47, 270.
Solutions / Solvents |
Molecular Properties / Structure |
Stoichiometry
|
A bridge-rectifier-milliammeter instrument for conductance studies Nordmann, J.; Steinberg, Edwin Modification of an earlier described instrument. Nordmann, J.; Steinberg, Edwin J. Chem. Educ. 1970, 47, 241.
Electrochemistry |
Laboratory Equipment / Apparatus |
Instrumental Methods
|
Isopoly and heteropoly compounds: A general chemistry laboratory experiment Kauffman, George B.; Vartanian, Paul F. This procedure involves the preparation of isopoly and heteropoly salts and introduces the beginning student to liquid-liquid extraction, titration, ion exchange, conductance, and a variety of synthetic and analytical techniques. Kauffman, George B.; Vartanian, Paul F. J. Chem. Educ. 1970, 47, 212.
Synthesis |
Acids / Bases |
Electrochemistry
|
Chemical queries. Especially for introductory chemistry teachers Young, J. A.; Malik, J. G.; Choppin, Gregory R.; Young, J. P. (1) Is there more to nuclear stability than only the neutron to proton ration? - answer by Choppin. (2) What are the products generated by the electrolysis of molten potassium nitrate with stainless steel electrodes? - answer by Young. Young, J. A.; Malik, J. G.; Choppin, Gregory R.; Young, J. P. J. Chem. Educ. 1970, 47, 73.
Nuclear / Radiochemistry |
Isotopes |
Atomic Properties / Structure |
Electrochemistry
|
Transistorized power sources for constant current coulometric titration Stock, John T. This coulometric titrator uses a complementary pair of transistors to minimize heating affects and improve stability with respect to temperature; an example of experimental use for the apparatus is included. Stock, John T. J. Chem. Educ. 1969, 46, 858.
Laboratory Equipment / Apparatus |
Titration / Volumetric Analysis |
Aqueous Solution Chemistry |
Quantitative Analysis |
Instrumental Methods |
Electrochemistry
|
Potentiometric determination of solubility product constants: A laboratory experiment Tackett, Stanford L. This paper describes an experiment in which measured potentials and calculated activity coefficients are used to obtain the solubility product constants of silver halides. Tackett, Stanford L. J. Chem. Educ. 1969, 46, 857.
Instrumental Methods |
Electrochemistry |
Precipitation / Solubility |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Diffusion of potassium permanganate as a lecture demonstration Conard, C. R.; Bent, H. E. Dropping crystals of potassium permanganate into a tall column of water leads to the slow dissolution and diffusion of the potassium permanganate throughout the column over a semester's time. Conard, C. R.; Bent, H. E. J. Chem. Educ. 1969, 46, 758.
Transport Properties |
Aqueous Solution Chemistry |
Kinetic-Molecular Theory |
Solutions / Solvents |
Liquids
|
The standard electrode potential of the silver-silver bromide electrode Venable, R. L.; Roach, D. V. Calculations of the standard electrode potential of the silver-silver bromide electrode indicate that many values listed in textbooks are incorrect. Venable, R. L.; Roach, D. V. J. Chem. Educ. 1969, 46, 741.
Electrochemistry |
Aqueous Solution Chemistry |
Quantitative Analysis
|
Chemical queries. Especially for introductory chemistry teachers Young, J. A.; Malik, J. G.; House, J. E., Jr.; Campbell, J. A. (1) When is the rule valid that the rate of reaction approximately doubles with a ten-degree temperature rise? - answer by House. (2) On the colors of transition metal complexes. (3) On an electrolysis experiment in which an acid solution is used to minimize the hydrolysis of Cu 2+. - answer by Campbell. Young, J. A.; Malik, J. G.; House, J. E., Jr.; Campbell, J. A. J. Chem. Educ. 1969, 46, 674.
Rate Law |
Kinetics |
Transition Elements |
Coordination Compounds |
Atomic Properties / Structure |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Acids / Bases
|
A simple amperostat for coulometric titration Vincent, Colin A.; Ward, J. G. Describes the circuit, assembly, and performance of a simple amperostat for coulometric titration. Vincent, Colin A.; Ward, J. G. J. Chem. Educ. 1969, 46, 613.
Laboratory Equipment / Apparatus |
Titration / Volumetric Analysis |
Quantitative Analysis |
Oxidation / Reduction |
Electrochemistry
|
Chemical queries. Especially for introductory chemistry teachers Young, J. A.; Malik, J. G.; Haight, Gilbert P., Jr.; Rechnitz, Garry A. (1) Suggestions for presenting the relationship between the Fahrenheit and Celsius temperature scales. (2) Why are 4s rather than 3d electrons involved in the first and second ionizations of the first row transition elements? - answer by Haight. (3) The basis for the mnemonic ordering of atomic orbitals. (4) What is a liquid-liquid membrane electrode? Is it the same as an ion-selective electrode? - answer by Rechnitz. Young, J. A.; Malik, J. G.; Haight, Gilbert P., Jr.; Rechnitz, Garry A. J. Chem. Educ. 1969, 46, 444.
Nomenclature / Units / Symbols |
Atomic Properties / Structure |
Transition Elements |
Periodicity / Periodic Table |
Electrochemistry |
Ion Selective Electrodes |
Membranes
|
A simple test for a conductor Yamana, Shukichi; Yamana, Hikaru; Yamana, Hajimu An ordinary fluorescent lamp can be used to test whether a substance is a conductor or not. Yamana, Shukichi; Yamana, Hikaru; Yamana, Hajimu J. Chem. Educ. 1969, 46, 354.
Physical Properties |
Conductivity
|
Chemical queries. Especially for introductory chemistry teachers Young, J. A.; Malik, J. G.; Quagliano, James V.; Danehy, James P. (1) Why different potential for copper/zinc cells when using nitrates vs. sulfates? Why is neither cell potential as large as predicted by Nerst equation? (2) Do elements in the zinc subgroup belong to the transition series? - answer by Quagliano. (3) How can the 2,4,5-trichloro derivative of phenoxyacetic acid be prepared? - answer by Danehy. Young, J. A.; Malik, J. G.; Quagliano, James V.; Danehy, James P. J. Chem. Educ. 1969, 46, 227.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Periodicity / Periodic Table |
Metals |
Synthesis |
Aromatic Compounds
|
Disc electrophoresis Brewer, John M.; Ashworth, Raymond B. Describes the procedures involved in separating proteins or nucleic acids through disc electrophoresis. Brewer, John M.; Ashworth, Raymond B. J. Chem. Educ. 1969, 46, 41.
Electrochemistry |
Electrophoresis |
Proteins / Peptides |
Separation Science
|
Avogadro's number by four methods Slabaugh, W. H. Describes a project by two general chemistry students to compare four methods for finding Avogadro's number; this article focusses on the electroplating method. Slabaugh, W. H. J. Chem. Educ. 1969, 46, 40.
Stoichiometry |
Electrochemistry
|
The cell potential and the distance between electrodes Lauren, Paul M. This demonstration illustrates the importance of the role played by ion diffusion in determining the magnitude of the emf of a primary cell. Lauren, Paul M. J. Chem. Educ. 1968, 45, A691.
Aqueous Solution Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Le Chtelier's principle Melott, Adrian L. Adding a strong base to aqueous ammonia causes gaseous ammonia to be released. Melott, Adrian L. J. Chem. Educ. 1968, 45, A519.
Equilibrium |
Solutions / Solvents |
Precipitation / Solubility |
Acids / Bases |
Aqueous Solution Chemistry
|
Oxidation of copper by hydrochloric acid Walker, Noojin; George, Donald L. Demonstrates the oxidation of copper by hydrochloric acid. Walker, Noojin; George, Donald L. J. Chem. Educ. 1968, 45, A429.
Oxidation / Reduction |
Acids / Bases |
Electrochemistry
|
A dual range direct current power supply for student use Mowery, Dwight F., Jr. Presents a design for and the performance of a dual range direct current power supply for student use. Mowery, Dwight F., Jr. J. Chem. Educ. 1968, 45, 739.
Laboratory Equipment / Apparatus |
Electrochemistry
|
Mole fraction versus molality Creak, G. Alan Mole fractions are not always unambiguous when used in the context of ionic solutions. Creak, G. Alan J. Chem. Educ. 1968, 45, 622.
Nomenclature / Units / Symbols |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Verification of the form of the Nernst equation: An experiment for introductory chemistry Evans, James S. In this experiment, students record data for the concentration dependence of the ferrous-ferric half-cell potential at a platinum electrode, using a silver-silver ion reference electrode, a salt bridge, and a voltmeter. Evans, James S. J. Chem. Educ. 1968, 45, 532.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Effect of complexing agents on oxidation potentials Helsen, Jef A short note on a simple experiment to demonstrate the effect of complexing agents on the oxidation-reduction properties of redox couples such as Fe3+/Fe2+. Helsen, Jef J. Chem. Educ. 1968, 45, 518.
Coordination Compounds |
Oxidation / Reduction |
Aqueous Solution Chemistry |
Electrochemistry
|
Chemical queries. Especially for introductory chemistry teachers Young, J. A.; Malik, J. G. (1) How can half-reactions be added to determine potentials? (2) What is the approximate size and weight of uranium-235 necessary for a chain reaction to occur? (3) What is the distinction between an inhibitor and a negative catalyst? Young, J. A.; Malik, J. G. J. Chem. Educ. 1968, 45, 477.
Electrochemistry |
Nuclear / Radiochemistry |
Catalysis
|
Le Chtelier and ionic equilibria Ringbom, Anders When s solution contains several weak acids, the squares of the separately calculated hydrogen ion concentrations of all weak acids in the solution are additive. Ringbom, Anders J. Chem. Educ. 1968, 45, 442.
Equilibrium |
Acids / Bases |
Precipitation / Solubility |
Solutions / Solvents
|
The Becquerel effect Ensanian, Minas A short note on a demonstration of the Becquerel effect. Ensanian, Minas J. Chem. Educ. 1968, 45, 240.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry
|
A lecture room digital multimeter Barnard, W. Robert.; Kelley, John C.; Gidden, Robert; Eberhardt, William H. Presents a design for a lecture room digital multimeter and a lecture table manometer. Barnard, W. Robert.; Kelley, John C.; Gidden, Robert; Eberhardt, William H. J. Chem. Educ. 1968, 45, 206.
Electrochemistry |
Laboratory Computing / Interfacing |
Laboratory Equipment / Apparatus
|
Coulometric titration of cyclohexene with bromine Evans, Dennis H. Describes the coulometric titration of cyclohexene with bromine appropriate for an introductory course. Evans, Dennis H. J. Chem. Educ. 1968, 45, 88.
Electrochemistry |
Titration / Volumetric Analysis |
Quantitative Analysis
|
Metallurgy E. Metals and Alloys Alyea, Hubert N.; Soule, Dean; Rogers, Crosby U. Demonstrations include the conductivity, expansion through heating, and identification of metals. Alyea, Hubert N.; Soule, Dean; Rogers, Crosby U. J. Chem. Educ. 1967, 44, A717.
Metallurgy |
Metals |
Conductivity |
Qualitative Analysis
|
Metallurgy D. Refining the Metal Alyea, Hubert N. Copper refined by electroplating. Alyea, Hubert N. J. Chem. Educ. 1967, 44, A717.
Metallurgy |
Metals |
Electrochemistry
|
Group 1. The Alkali Metals C. The Copper Group Alyea, Hubert N.; Mancuso, Carl J.; Bernard, Robert Demonstrations include electroplating copper, Fehling's test, the silver mirror (Ag+ + tartrate), insoluble silver salts, photo-film + hypo, hypo fixer + silver coin, and a solution of gold in aqua-regia. Alyea, Hubert N.; Mancuso, Carl J.; Bernard, Robert J. Chem. Educ. 1967, 44, A1005.
Electrochemistry |
Precipitation / Solubility |
Aqueous Solution Chemistry |
Solutions / Solvents |
Metals
|
Dissociation of weak acids and bases at infinite dilution Stock, D. Irwin It is all too easy to forget that in a solution of infinite dilution the solvent itself is ionized to an extent governed by its ionization constant, and that the concentration of its ions will appear in the expression for the dissociation constant of the solute. Stock, D. Irwin J. Chem. Educ. 1967, 44, 764.
Acids / Bases |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Microapparatus for demonstrating electrophoresis on paper Stock, John T.; DeThomas, A. V. This article describes a microapparatus for demonstrating electrophoresis on paper that is powered by a 9 V battery. Stock, John T.; DeThomas, A. V. J. Chem. Educ. 1967, 44, 415.
Microscale Lab |
Electrochemistry |
Electrophoresis |
Separation Science |
Laboratory Equipment / Apparatus
|
Ionization, Electricity D. Special electrical phenomena Bernard, Robert; Slabaugh, W. H. Demonstrations include cation analysis, conductivity during the titration of Ba(OH)2 + HCl vs H2C2O4, and conductivity during the titration of Ba(OH)2 + HCl vs H3PO4. Bernard, Robert; Slabaugh, W. H. J. Chem. Educ. 1966, 43, A901.
Titration / Volumetric Analysis |
Quantitative Analysis |
Qualitative Analysis |
Electrochemistry |
Conductivity
|
Ionization, Electricity C. Consumption of electricity Bernard, Robert; Owens, Charles; Holman, J. S.; Peischl, C. J. Demonstrations include the electrolysis of ZnCl2, electrodeposition of Pb, lead chromate by electrolysis, and manufacturing NaOH and Cl2 by the Hg-process. Bernard, Robert; Owens, Charles; Holman, J. S.; Peischl, C. J. J. Chem. Educ. 1966, 43, A901.
Electrochemistry
|
Ionization, electricity. B. Production of electricity. C. Consumption of electricity. Jackman, Kenneth; Ulery, Denver; Rogers, Crosby; Hornbeck, LeRoy G.; Barnard, Robert; Alyea, Hubert N.; Jackman, Kenneth V.; Burke, Christie Demonstrations include the hydrogen electrode, H-electrode generating its own H2, consumption of electricity, Zn-Cu coupling, overvoltage, the Faraday effect, lead storage battery, and the electrolysis of NaCl. Jackman, Kenneth; Ulery, Denver; Rogers, Crosby; Hornbeck, LeRoy G.; Barnard, Robert; Alyea, Hubert N.; Jackman, Kenneth V.; Burke, Christie J. Chem. Educ. 1966, 43, A658.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Ionization, electricity B. (continued) Production of electricity Hornbeck, LeRoy; Barnard, Robert; Jackman, Kenneth; Ulery, Denver; Rogers, Crosby Demonstrations include magnesium + acid ringing a bell, magnesium + acid lighting a bulb, couples without a salt bridge, and half-cells with salt bridge and microammeter. Hornbeck, LeRoy; Barnard, Robert; Jackman, Kenneth; Ulery, Denver; Rogers, Crosby J. Chem. Educ. 1966, 43, A585.
Aqueous Solution Chemistry |
Electrochemistry
|
Ionization, electricity. A. Proof that ions exist Alyea, Hubert N.; Johnson, William.; Cocoran, Paul; Barnard, Robert; Rolf, Fred; Klug, Evangeline Demonstrations include conductivity using a meter, conductivity of HCl in water versus in toluene, conductivity of HCl in water versus in benzene, acids plus zinc, indicators with acids and bases (H3O+ and OH-), rate of reaction and acid strengths, colors of ions, and color of cobalt ion and a cobalt complex. Alyea, Hubert N.; Johnson, William.; Cocoran, Paul; Barnard, Robert; Rolf, Fred; Klug, Evangeline J. Chem. Educ. 1966, 43, A539.
Acids / Bases |
Conductivity |
Dyes / Pigments |
Rate Law
|
Are solubilities and solubility products related? Meites, Louis; Prode, J. S. F.; Thomas, Henry C. The relation between solubilities and solubility products is far less intimate than is stated or implied by introductory texts and the ideas and calculations involved are too complex for presentation on the elementary level. Meites, Louis; Prode, J. S. F.; Thomas, Henry C. J. Chem. Educ. 1966, 43, 667.
Solutions / Solvents |
Precipitation / Solubility
|
Acetamide as a solvent for freezing point depression and solubility experiments Davis, Jeff C., Jr. Suggests acetamide as a solvent for freezing point depression and solubility experiments. Davis, Jeff C., Jr. J. Chem. Educ. 1966, 43, 611.
Precipitation / Solubility |
Physical Properties |
Solutions / Solvents
|
The dissolution of tin in solutions of iodine Davies, J. F.; Trotman-Dickenson, A. F. The progress of this reaction can be followed by the loss of weight of a tin disc. Davies, J. F.; Trotman-Dickenson, A. F. J. Chem. Educ. 1966, 43, 483.
Solutions / Solvents |
Precipitation / Solubility |
Kinetics |
Gravimetric Analysis
|
Porous glass salt bridges Durst, Richard A. Describes the characteristics and applications of porous glass salt bridges. Durst, Richard A. J. Chem. Educ. 1966, 43, 437.
Laboratory Equipment / Apparatus |
Electrochemistry
|
Manometric apparatus for vapor and solution studies Taha, Ahmed A.; Grigsby, Ronald D.; Johnson, James R.; Christian, Sherril D.; Affsprung, Harold E. Presents a device that can be sued to obtain vapor density and PVT measurements, vapor pressures of solutions and liquids, dew-point pressures and compositions, solubilities of gases in liquids, solubilities of slightly-miscible liquids, equilibrium constants for association reactions in solutions, interactions of vapors and gases with solids, and gas and vapor viscosities. Taha, Ahmed A.; Grigsby, Ronald D.; Johnson, James R.; Christian, Sherril D.; Affsprung, Harold E. J. Chem. Educ. 1966, 43, 432.
Laboratory Equipment / Apparatus |
Physical Properties |
Solutions / Solvents |
Gases |
Liquids |
Solids
|
Electro-osmosis as a demonstration experiment. Coupled irreversible effects and direct energy conversion Dixon, John R.; Schafer, Frank W. When a stream of water is forced through a porous pug or other resistance associated with a pressure drop, an electrical potential is developed between the high and low pressure sides of the resistance. Dixon, John R.; Schafer, Frank W. J. Chem. Educ. 1966, 43, 380.
Electrochemistry
|
Discarded "IV" bottles are useful Ostrander, Charles Discarded "IV" bottles are useful for dispensing solutions and reduce the chances of contamination. Ostrander, Charles J. Chem. Educ. 1966, 43, 379.
Laboratory Equipment / Apparatus |
Solutions / Solvents
|
Simple experiments in amperometry. Determination of acids, oxidizing agents Feldman, Frederic J. Amperometry, the measurement of current resulting from an electrochemical reaction at the electrode, is a simple means of determining the concentration of an electroactive species. An experiment is described here for the determination of acids or oxidizing agents by amperometry. Feldman, Frederic J. J. Chem. Educ. 1966, 43, 378.
Quantitative Analysis |
Electrochemistry
|
Simple equipment for automatic potentiometric pH titrations Olsen, Eugene D. This paper describes a simple yet versatile apparatus employing a siphon pipet to deliver titrant solution automatically and accurately during the course of a titration. Olsen, Eugene D. J. Chem. Educ. 1966, 43, 310.
pH |
Titration / Volumetric Analysis |
Electrochemistry |
Aqueous Solution Chemistry |
Quantitative Analysis |
Laboratory Equipment / Apparatus
|
Electrical conductance apparatus Steinberg, Edwin E.; Nordmann, J. A circuit diagram for an electrical conductance apparatus that is safe, accurate, and allows for qualitative measurements. Steinberg, Edwin E.; Nordmann, J. J. Chem. Educ. 1966, 43, 309.
Electrochemistry |
Conductivity |
Laboratory Equipment / Apparatus
|
Simple two-dimensional magnetic disc models of ionic liquids Angell, C. A.; Gruen, D. M. Modeling ionic liquids using magnetic, elastomer-bonded materials capable of floating on water. Angell, C. A.; Gruen, D. M. J. Chem. Educ. 1966, 43, 194.
Molecular Modeling |
Liquids |
Solutions / Solvents
|
Electrode potentials Shombert, Donald Changes in the potential observed for two Daniell cells are due to changes in ion concentrations. Shombert, Donald J. Chem. Educ. 1965, 42, A215.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry |
Equilibrium
|
Potential hazards involved in using dimethyl sulfoxide Buckley, Alan Solutions of compounds in DMSO can present particular hazards. Buckley, Alan J. Chem. Educ. 1965, 42, 674.
Solutions / Solvents
|
Potentiometer for the general chemistry laboratory Wood, Stanley E.; Anderson, C. B. A circuit diagram is presented for a potentiometer used to verify the Nernst equation and investigate other electrochemical phenomenon. Wood, Stanley E.; Anderson, C. B. J. Chem. Educ. 1965, 42, 659.
Laboratory Equipment / Apparatus |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Student potentiometer using a zener diode Atkinson, George F. Presents a circuit diagram for a student potentiometer using a zener diode. Atkinson, George F. J. Chem. Educ. 1965, 42, 656.
Laboratory Equipment / Apparatus |
Electrochemistry
|
Potentiometric titration of aspirin in ethanol Shen, Samuel Y.; Gilman, Alfred J. This experiment illustrates the potentiometric end point in nonaqueous acid-base titrations. Shen, Samuel Y.; Gilman, Alfred J. J. Chem. Educ. 1965, 42, 540.
Titration / Volumetric Analysis |
Electrochemistry |
Quantitative Analysis |
Acids / Bases
|
Notes on experiments for introductory college chemistry A brief set of notes regarding the complex salt [Co(NH3)5Cl]Cl2, the Guoy balance, Avogadro's number, and the stoichiometry of a mixture. J. Chem. Educ. 1965, 42, 495.
Coordination Compounds |
Magnetic Properties |
Stoichiometry |
Solutions / Solvents
|
Solvent effect on the keto-enol equilibrium of acetoacetic ester Lockwood, Karl L. The purpose of the investigation is to introduce students to some of the factors that influence an equilibrium constant. Lockwood, Karl L. J. Chem. Educ. 1965, 42, 481.
Solutions / Solvents |
Equilibrium
|
Relationship of enthalpy of solution, solvation energy, and crystal energy Neidig, H. A., Yingling, R. T. The primary objectives of this investigation are to relate enthalpy of solution, solvation energy, and crystal energy using Hess' Law and to acquaint students with Born-Haber type energy cycles. Neidig, H. A., Yingling, R. T. J. Chem. Educ. 1965, 42, 473.
Thermodynamics |
Solutions / Solvents |
Crystals / Crystallography |
Calorimetry / Thermochemistry
|
Experimental approach to stoichiometry. In first-year chemistry at Northwestern King, L. Carroll; Cooper, Milton Presents five experiments in which students are given a minimal set of directions and a simply stated objective. King, L. Carroll; Cooper, Milton J. Chem. Educ. 1965, 42, 464.
Stoichiometry |
Coordination Compounds |
Undergraduate Research |
Aqueous Solution Chemistry |
Solutions / Solvents |
Precipitation / Solubility |
Titration / Volumetric Analysis
|
Detection of chloride ion in the presence of bromide, iodide, and thiocyanate ions Paul, Armine D.; Gibson, John A., Jr. Summarizes and evaluates several published methods for detecting chloride ions in the presence of bromide, iodide, and thiocyanate ions. Paul, Armine D.; Gibson, John A., Jr. J. Chem. Educ. 1965, 42, 440.
Aqueous Solution Chemistry |
Qualitative Analysis |
Solutions / Solvents |
Precipitation / Solubility
|
Preparation of chromic acid cleaning solution Krause, Richard E. This short note describes a simple method for the preparation of chromic acid cleaning solution. Krause, Richard E. J. Chem. Educ. 1965, 42, 426.
Acids / Bases |
Laboratory Management |
Solutions / Solvents
|
A temperature-independent concentration unit Blumberg, A. A.; Siska, P. E.; San Filippo, Joseph, Jr. Describes a new system of concentration, termed molicity by the authors. Blumberg, A. A.; Siska, P. E.; San Filippo, Joseph, Jr. J. Chem. Educ. 1965, 42, 420.
Nomenclature / Units / Symbols |
Solutions / Solvents
|
Several designs for constructing potentiometers Battino, Rubin This paper describes several designs for constructing inexpensive potentiometers that possess a practical degree of precision. Battino, Rubin J. Chem. Educ. 1965, 42, 211.
Electrochemistry |
Instrumental Methods |
Laboratory Equipment / Apparatus
|
Electrolysis: H2O and H2O2 Eberhardt, William H. This demonstration involves the concurrent electrolysis of water and hydrogen peroxide. Eberhardt, William H. J. Chem. Educ. 1964, 41, A591.
Electrochemistry |
Water / Water Chemistry
|
Metallic reduction of aqueous hydrogen chloride Walker, Noojin, Jr. Calcium reacts with HCl to liberate hydrogen gas. Walker, Noojin, Jr. J. Chem. Educ. 1964, 41, A477.
Reactions |
Oxidation / Reduction |
Metals |
Electrochemistry
|
Electrophoresis using thin layer materials Criddle, W. J.; Moody, G. J.; Thomas, J. D. R. Thin layer materials prepared for chromatography are used for electrophoresis. Criddle, W. J.; Moody, G. J.; Thomas, J. D. R. J. Chem. Educ. 1964, 41, 609.
Electrochemistry |
Electrophoresis |
Separation Science |
Thin Layer Chromatography
|
A simple quantitative electrolysis experiment for first year chemistry Petrucci, Ralph H.; Moews, P. C., Jr. This simple and inexpensive electrolysis experiment for first year chemistry allows a quantitative application of Faraday's laws without the need for analytical balances. Petrucci, Ralph H.; Moews, P. C., Jr. J. Chem. Educ. 1964, 41, 552.
Electrochemistry
|
Float method for the analysis of solutions Osburn, J. O. Presents suggestions for investigations to accompany and earlier published article. Osburn, J. O. J. Chem. Educ. 1963, 40, A538.
Solutions / Solvents
|
Demonstration notes: Chemiluminescence in electrolysis Villarreal, Fidel; Garcia, Octavio Suggests a modification to the usual chemiluminescence demonstration with luminol. Villarreal, Fidel; Garcia, Octavio J. Chem. Educ. 1963, 40, A477.
Electrochemistry |
Oxidation / Reduction
|
A simple demonstration of some precipitation and solubility effects Matijevic, E. Provides suggestions for research to accompany earlier published articles. Matijevic, E. J. Chem. Educ. 1963, 40, A386.
Undergraduate Research |
Precipitation / Solubility |
Solutions / Solvents
|
Electrolysis of sodium through glass Dutton, F. B. Sodium is deposited on the inside of a light bulb immersed in molten NaNO3. Dutton, F. B. J. Chem. Educ. 1963, 40, A313.
Electrochemistry
|
Analysis of aspirin: A conductometric titration Proctor, J. S.; Roberts, J. E. Suggests research questions based on an earlier published article. Proctor, J. S.; Roberts, J. E. J. Chem. Educ. 1963, 40, A306.
Undergraduate Research |
Titration / Volumetric Analysis |
Quantitative Analysis |
Electrochemistry |
Conductivity
|
Precipitation from homogeneous solution Gordon, L.; Salesin, E. D. Suggests research questions based on an earlier published article. Gordon, L.; Salesin, E. D. J. Chem. Educ. 1963, 40, A306.
Undergraduate Research |
Solutions / Solvents |
Precipitation / Solubility |
pH
|
Oxidation of bromide and iodide ions Dutton, Frederic B. Color changes are indicative of oxidation reactions of bromide and iodide ions. Dutton, Frederic B. J. Chem. Educ. 1963, 40, A241.
Oxidation / Reduction |
Reactions |
Electrochemistry
|
Oxidation of bromide and iodide ions Dutton, Frederic B. Color changes are indicative of oxidation reactions of bromide and iodide ions. Dutton, Frederic B. J. Chem. Educ. 1963, 40, A241.
Oxidation / Reduction |
Reactions |
Electrochemistry
|
Conduction and semiconduction Juster, Norman J. Reviews the conductors and semiconductors, the p-n junction, and transistors. Juster, Norman J. J. Chem. Educ. 1963, 40, 489.
Conductivity |
Semiconductors
|
An experiment with galvanic cells: For the general chemistry laboratory Dillard, Clyde R.; Kammeyer, Patty Hall Describes a simple, low-cost galvanic cell and its use to compare various metallic electrodes. Dillard, Clyde R.; Kammeyer, Patty Hall J. Chem. Educ. 1963, 40, 363.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Metals
|
Magnesium cell for demonstration Mathur, Prem Behari; Paul, Nityanandan J. Describes a cell system consisting of copper and magnesium plates or ribbon immersed in copper sulfate solution. Mathur, Prem Behari; Paul, Nityanandan J. J. Chem. Educ. 1963, 40, 43.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
A compact light box Barnard, Robert Presents the design of a light box suitable for demonstrations involving solutions, precipitations, or any basic chemical reaction. Barnard, Robert J. Chem. Educ. 1962, 39, A953.
Precipitation / Solubility |
Solutions / Solvents |
Reactions
|
Electrolytic conductivity: A demonstration experiment Thomas, William B. Describes a simple method of measuring electrolytic conductivity based on Ohm's law. Thomas, William B. J. Chem. Educ. 1962, 39, 531.
Electrochemistry |
Conductivity |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Float method for the analysis of solutions Osburn, James O.; Choi, Il C. Describes a simple procedure for making precise and reproducible concentration measurements through the thermal equilibrium float method. Osburn, James O.; Choi, Il C. J. Chem. Educ. 1961, 38, 578.
Solutions / Solvents
|
A low cost direct current source for the laboratory Barnard, W. Robert.; Woodriff, Ray Presents a low cost source of variable direct current. Barnard, W. Robert.; Woodriff, Ray J. Chem. Educ. 1961, 38, 521.
Laboratory Equipment / Apparatus |
Electrochemistry
|
Ultra Low Conductivity Water National Bureau of Standards Summary Technical Report Describes the production of water with a conductivity approaching the lower theoretical limit. National Bureau of Standards Summary Technical Report J. Chem. Educ. 1961, 38, 421.
Water / Water Chemistry |
Conductivity |
Aqueous Solution Chemistry
|
Faraday's laws in one equation Strong, Frederick C. Presents a derivation of a single-equation statement of Faraday's laws. Strong, Frederick C. J. Chem. Educ. 1961, 38, 98.
Electrochemistry
|
Student experiment with filter paper electrophoresis Garvin, James E. The effect of electrical charge in determining some of the properties of amino acids and proteins can be simply and convincingly demonstrated to the student by means of filter paper electrophoresis. Garvin, James E. J. Chem. Educ. 1961, 38, 36.
Separation Science |
Electrophoresis |
Amino Acids |
Proteins / Peptides |
Electrochemistry
|
Determination of reaction rates with an A.C. conductivity bridge: A student experiment Chesick, J. P.; Patterson, A., Jr. Describes a quantitative experiment in chemical kinetics suitable for advanced freshmen or physical chemistry; it involves a study of the solvolysis of tertiary butyl chloride by means of conductance measurements. Chesick, J. P.; Patterson, A., Jr. J. Chem. Educ. 1960, 37, 242.
Conductivity |
Kinetics |
Rate Law
|
Determination of solubility: A laboratory experiment Wolthuis, Enno; Pruiksma, Arthur B.; Heerema, Robert P. Students are required to determine the solubility of common salts at various temperatures by finding the temperature at which a solution of known composition is saturated. Wolthuis, Enno; Pruiksma, Arthur B.; Heerema, Robert P. J. Chem. Educ. 1960, 37, 137.
Precipitation / Solubility |
Quantitative Analysis |
Aqueous Solution Chemistry |
Solutions / Solvents
|
Letters to the editor Hall, Arthur C. The molality-molarity paradox presented in an earlier article is artificial rather than apparent. Hall, Arthur C. J. Chem. Educ. 1959, 36, 584.
Stoichiometry |
Solutions / Solvents |
Nomenclature / Units / Symbols
|
Potentiometric measurements of equilibria: In general chemistry laboratory Chesick, J. P.; Patterson, Andrew, Jr. The authors describe an experiment in which the solubility product of silver chloride, the ionization constant of the silver-ammonia complex, and the ionization constant of acetic acid can be determined with one afternoon of work. Chesick, J. P.; Patterson, Andrew, Jr. J. Chem. Educ. 1959, 36, 496.
Electrochemistry |
Equilibrium |
Precipitation / Solubility |
Aqueous Solution Chemistry |
Acids / Bases
|
The growth of lead trees in silicic acid gels Hurd, Charles B.; Lamareaux, Harry F. The fact that more active metals, such as zinc and cadmium, will replace lead in solutions of lead salts is well known; it is not so well known that the lead deposited will form an attractive, tree-like growth, particularly if supported in a gel. Hurd, Charles B.; Lamareaux, Harry F. J. Chem. Educ. 1959, 36, 472.
Electrochemistry
|
Common sources of confusion; Electrode sign conventions Anson, Fred C. Examines common sources of confusion with respect to electrode signs and recommends new conventions. Anson, Fred C. J. Chem. Educ. 1959, 36, 394.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
A molality-molarity paradox? Toby, Sidney The author points out that there seems no obvious reason why molality could not equal molarity in a solution whose density is less than unity. Toby, Sidney J. Chem. Educ. 1959, 36, 230.
Stoichiometry |
Nomenclature / Units / Symbols |
Solutions / Solvents |
Aqueous Solution Chemistry
|
Textbook errors: Guest column. The solubility product constants of the metallic sulfides Waggoner, William H. This report reviews direct and indirect methods for investigating the solubility of substances, including conductance, potentiometric, optical, equilibrium, and thermodynamic procedures. Waggoner, William H. J. Chem. Educ. 1958, 35, 339.
Precipitation / Solubility |
Equilibrium |
Metals |
Conductivity
|
Some demonstrations with the overhead projector Keenan, C. W. This paper describes the construction and use of demonstration apparatus to be used in conjunction with an overhead projector. Keenan, C. W. J. Chem. Educ. 1958, 35, 36.
Electrochemistry |
Gases |
Electrolytic / Galvanic Cells / Potentials |
Transport Properties
|
Recent developments concerning the signs of electrode potentials Licht, Truman S.; deBethune, Andre J. It is the purpose of this paper to review recent developments concerning the signs of electrode potentials, particularly with respect to single electrode potential, half-reaction potential, and half-cell electromotive force. Licht, Truman S.; deBethune, Andre J. J. Chem. Educ. 1957, 34, 433.
Electrochemistry |
Nomenclature / Units / Symbols |
Electrolytic / Galvanic Cells / Potentials
|
Some electrochemical experiments for freshmen Gorman, Mel The purpose of this discussion is to present an exercise for freshman laboratory work involving electrochemical unknowns and special electrode potential projects not usually studied in the first-year course. Gorman, Mel J. Chem. Educ. 1957, 34, 409.
Electrochemistry |
Qualitative Analysis
|
Letters to the editor Campbell, J. A. The author includes an interpretation of the "Beating Heart Experiment" which was omitted in an earlier Journal article. Campbell, J. A. J. Chem. Educ. 1957, 34, 362.
Oxidation / Reduction |
Electrochemistry
|
Textbook errors: XIII. The nature of ionic and molecular species in sulfuric acid Brubaker, Carl H., Jr. Addresses misconceptions regarding the strength of sulfuric acid and the nature of ionic and molecular species present in solution. Brubaker, Carl H., Jr. J. Chem. Educ. 1957, 34, 325.
Molecular Properties / Structure |
Solutions / Solvents |
Aqueous Solution Chemistry
|
A simplified electrolysis apparatus Teichman, Louis Describes a simplified electrolysis apparatus using a plastic dish, two electrodes, and two test tubes. Teichman, Louis J. Chem. Educ. 1957, 34, 291.
Laboratory Equipment / Apparatus |
Electrochemistry
|
The use of colloidal graphite for laboratory demonstrations Smith, Edward A. Examines the shape of graphite particles, the electrical properties of colloids, the coagulation of colloids, graphite and magnetic orientation, and the electrical conductivity of graphite. Smith, Edward A. J. Chem. Educ. 1956, 33, 600.
Colloids |
Conductivity |
Magnetic Properties
|
Electrolytic conductivity apparatus Schmuckler, Joseph S.; Schenck, Robert C. Presents an apparatus that will demonstrate the conductivity of salts when fused in the solid state, in solution, and in various degrees of dilution. Schmuckler, Joseph S.; Schenck, Robert C. J. Chem. Educ. 1956, 33, 506.
Laboratory Equipment / Apparatus |
Aqueous Solution Chemistry |
Conductivity
|
Nuclear batteries Garrett, Alfred B. Describes the structure, operation, and application of nuclear batteries. Garrett, Alfred B. J. Chem. Educ. 1956, 33, 446.
Nuclear / Radiochemistry |
Electrochemistry
|
A device for demonstrating conductivity of solutions Eiseman, Fred B., Jr. An apparatus has been developed that makes it possible to demonstrate the conductivities of solutions without destroying, transferring, or contaminating them Eiseman, Fred B., Jr. J. Chem. Educ. 1956, 33, 445.
Aqueous Solution Chemistry |
Conductivity |
Solutions / Solvents
|
Movable symbols and formulas as a teaching aid Lippincott, W. T.; Wheaton, Roger Movable magnetic squares with symbols and formulas printed on them are used as a visual teaching aid involving a variety of fundamental chemistry concepts. Lippincott, W. T.; Wheaton, Roger J. Chem. Educ. 1956, 33, 15.
Nomenclature / Units / Symbols |
Aqueous Solution Chemistry |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Apparatus for the demonstration of conductivity of electrolytes Suter, Hans A.; Kaelber, Lorraine This device uses a continuous flow of water and a light bulb to demonstrate the conductivity of electrolytes. Suter, Hans A.; Kaelber, Lorraine J. Chem. Educ. 1955, 32, 640.
Laboratory Equipment / Apparatus |
Aqueous Solution Chemistry |
Electrochemistry |
Conductivity
|
Textbook errors: III. The solubility of gases in liquids Mysels, Karol J. Rising temperature is generally said to reduce the solubility of gases in liquids, yet the facts disagree with any such generalization. Mysels, Karol J. J. Chem. Educ. 1955, 32, 399.
Gases |
Liquids |
Precipitation / Solubility |
Solutions / Solvents
|
Letters to the editor Weaver, Elbert C. Acknowledges and corrects an error in the referenced article regarding an example of Pearson's square. Weaver, Elbert C. J. Chem. Educ. 1954, 31, 102.
Solutions / Solvents |
Chemometrics
|
Letters to the editor Wescott, Emery N. Points out an error in the referenced article regarding an example of Pearson's square. Wescott, Emery N. J. Chem. Educ. 1954, 31, 101.
Solutions / Solvents |
Chemometrics
|
Suggestions for demonstrations Lapp, Walter S. The author briefly describes demonstrations involving the cathodic protection of iron from corrosion, the use of lithium in preparing hydrogen, an easily constructed conductivity kit, and a support for rubber stoppers. Lapp, Walter S. J. Chem. Educ. 1952, 29, 611.
Oxidation / Reduction |
Conductivity |
Aqueous Solution Chemistry
|
Letters Hackney, J. C. The author elaborates on the source of a fallacy in the calculation of an overall redox potential by combination of two half-cell potentials. Hackney, J. C. J. Chem. Educ. 1952, 29, 472.
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials |
Aqueous Solution Chemistry |
Oxidation / Reduction
|
Miscellaneous experiments Damerel, Charlotte I. Offers three demonstrations, the first involving molecular models illustrating the generation of optical isomers in a laboratory synthesis; the second demonstrating that liquid sodium chloride conducts and electric current; and the third examining the flow of electric current in an electrochemical galvanic cell. Damerel, Charlotte I. J. Chem. Educ. 1952, 29, 296.
Molecular Modeling |
Molecular Properties / Structure |
Chirality / Optical Activity |
Enantiomers |
Conductivity |
Electrochemistry |
Electrolytic / Galvanic Cells / Potentials
|
Combining half-reactions and their standard electrode potentials Miller, Sidney I. To increase the value of standard electrode potential tables, a new method of combination of half-cell reactions is proposed. Miller, Sidney I. J. Chem. Educ. 1952, 29, 140.
Electrochemistry |
Aqueous Solution Chemistry |
Electrolytic / Galvanic Cells / Potentials
|
The overhead projector and chemical demonstrations Slabaugh, W. H. Chemical demonstrations described for use with an overhead projector include the relative activity of metals, the electrolysis of water, the random motion of gas molecules, the action of metal couples, the relative strength of acids, the qualitative aspects of optical activity, and electrochemistry. Slabaugh, W. H. J. Chem. Educ. 1951, 28, 579.
Metals |
Kinetic-Molecular Theory |
Acids / Bases |
Electrochemistry |
Aqueous Solution Chemistry
|
Keeping properties of certain volumetric solutions Durham, Barbee William Presents a table listing the storage time and stability of various standard solutions. Durham, Barbee William J. Chem. Educ. 1951, 28, 387.
Solutions / Solvents |
Aqueous Solution Chemistry |
Laboratory Management
|
Electrochemistry in the freshman course Meldrum, William B. This paper emphasizes the importance of electrochemical concepts in the freshman chemistry course. Meldrum, William B. J. Chem. Educ. 1951, 28, 282.
Electrochemistry
|
|