TIGER

Journal Articles: 44 results
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
Using Candy Samples To Learn about Sampling Techniques and Statistical Data Evaluation  Larissa S. Canaes, Marcel L. Brancalion, Adriana V. Rossi, and Susanne Rath
This easy, interesting exercise demonstrates important aspects of sampling techniques and explores a simple statistical approach to commonly used parameters, the use of histogram, box-plot and whisker plots, and parametric and non-parametric statistical methods.
Canaes, Larissa S.; Brancalion, Marcel L.; Rossi, Adriana V.; Rath, Susanne. J. Chem. Educ. 2008, 85, 1083.
Learning Theories |
Mathematics / Symbolic Mathematics |
Quantitative Analysis
Which Method Is Most Precise; Which Is Most Accurate?  A. D. Jordan
The main objective of this experiment, which involves determining the density of a liquid by several methods, is to familiarize students with the concepts of precision and accuracy using data that can be acquired easily with a variety of apparatus and analyzed by simple statistics and a linear regression.
Jordan, A. D. J. Chem. Educ. 2007, 84, 1459.
Liquids |
Physical Properties |
Quantitative Analysis
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
pH Paradoxes: Demonstrating That It Is Not True That pH ≡ -log[H+]  Christopher G. McCarty and Ed Vitz
Six demonstrations highlighting paradoxes that arise if pH is incorrectly defined as -log[H+] are presented as justification for the recommendation that pH should be correctly defined as pH = -log aH+ in textbooks.
McCarty, Christopher G.; Vitz, Ed. J. Chem. Educ. 2006, 83, 752.
Acids / Bases |
Aqueous Solution Chemistry |
Ion Selective Electrodes |
pH |
Quantitative Analysis
Determination of Hypochlorite in Bleaching Products with Flower Extracts To Demonstrate the Principles of Flow Injection Analysis  Luiz Antônio Ramos, Kátia Roberta Prieto, Éder Tadeu Gomes Cavalheiro, and Carla Cristina Schmitt Cavalheiro
Proposes the use of crude flower extracts and a bleaching reaction between hypochlorite and anthocyanins to teach the principles of flow injection procedures.
Ramos, Luiz Antônio; Prieto, Kátia Roberta; Cavalheiro, Éder Tadeu Gomes; Cavalheiro, Carla Cristina Schmitt. J. Chem. Educ. 2005, 82, 1815.
Dyes / Pigments |
Natural Products |
pH |
Quantitative Analysis |
UV-Vis Spectroscopy |
Aromatic Compounds
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 Quantitative Determination of Food Dyes in Powdered Drink Mixes. A High School or General Science Experiment  Samuella B. Sigmann and Dale E. Wheeler
A simple spectrophotometric procedure for the quantitative determination of FD&C food dyes in powdered drink mixes appropriate for high school or general science classes is presented. This method describes the determination of the total quantity of food dye, the quantity of dye per serving, and the percent by mass of each dye in the sample. Directions for the creation of food dye calibration curves is also presented.
Sigmann, Samuella B.; Wheeler, Dale E. J. Chem. Educ. 2004, 81, 1475.
Aqueous Solution Chemistry |
Dyes / Pigments |
Food Science |
Quantitative Analysis |
UV-Vis Spectroscopy |
Consumer Chemistry
SI for Chemists: Persistent Problems, Solid Solutions. SI Basic Units: The Kilogram and the Mole  Paul J. Karol
The persistent perceived problem with the base units kilogram and mole addressed in those journal articles is resolvable once it is finally recognized that we have been using a double standard: the international platinumĀiridium kilogram prototype and 12C.
Karol, Paul J. J. Chem. Educ. 2004, 81, 800.
Nomenclature / Units / Symbols |
Quantitative Analysis |
Stoichiometry
SI for Chemists: Persistent Problems, Solid Solutions. SI Basic Units: The Kilogram and the Mole  Paul J. Karol
The persistent perceived problem with the base units kilogram and mole addressed in those journal articles is resolvable once it is finally recognized that we have been using a double standard: the international platinumĀiridium kilogram prototype and 12C.
Karol, Paul J. J. Chem. Educ. 2004, 81, 800.
Nomenclature / Units / Symbols |
Quantitative Analysis |
Stoichiometry
Bubble Stripping To Determine Hydrogen Concentrations in Ground Water: A Practical Application of Henry's Law  Daniel M. McInnes and Don Kampbell
Applying Henry's law to determine the concentration of hydrogen in ground water as a means of identifying possible contamination by chlorinated organic compounds.
McInnes, Daniel M.; Kampbell, Don. J. Chem. Educ. 2003, 80, 516.
Water / Water Chemistry |
Gases |
Quantitative Analysis |
Applications of Chemistry
Analysis of Carbon Monoxide in Blood  Benjamin P. Huddle and Joseph C. Stephens
Qualitative and quantitative analysis of carbon monoxide in blood using the Conway diffusion method.
Huddle, Benjamin P.; Stephens, Joseph C. J. Chem. Educ. 2003, 80, 441.
Gases |
Toxicology |
UV-Vis Spectroscopy |
Qualitative Analysis |
Quantitative Analysis |
Applications of Chemistry |
Forensic Chemistry
A Liquid Prism for Refractive Index Studies  Michael D. Edmiston
Easy fabrication of a hollow glass prism and application involving measuring the sugar content of soft drinks.
Edmiston, Michael D. J. Chem. Educ. 2001, 78, 1479.
Laboratory Equipment / Apparatus |
Lasers |
Spectroscopy |
Quantitative Analysis
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
Using a Diode Laser Pointer to Count Drops and Automate Titration Systems  Paul Ogren, Steve Nelson, and Ian Henry
A diode laser pointer is used to construct a simple system for recording drops falling from a buret. The drop signal is recorded together with one or more measurement signals by a LabVIEW-based programmable interfacing system. A standard buret is converted to a Mariotte buret to provide a constant drop-addition rate.
Ogren, Paul; Nelson, Steve; Henry, Ian. J. Chem. Educ. 2001, 78, 353.
Laboratory Computing / Interfacing |
Quantitative Analysis |
Instrumental Methods
Learning Quality Assurance/Quality Control Using U.S. EPA Techniques. An Undergraduate Course for Environmental Chemistry Majors  Susan M. Libes
In the environmental realm, quality control (QC) includes activities associated with sampling, sample preservation and storage, method validation, and analysis involving solids, liquids, and gases. Students should be led to discover the need for QC by first performing analyses with little guidance. This is followed by a class discussion in which they critique their data.
Libes, Susan. J. Chem. Educ. 1999, 76, 1642.
Instrumental Methods |
Quantitative Analysis |
Water / Water Chemistry
Experiments with Zeolites at the Secondary-School Level: Experience from The Netherlands  Eric N. Coker, Pamela J. Davis, Aonne Kerkstra, and Herman van Bekkum
This article describes a number of experiments that involve zeolites and are suitable for secondary-school chemistry laboratories. Students test the hardness of tap water before and after treatment with some zeolite and perform tests with a range of commercial laundry detergents containing zeolites.
Coker, Eric N.; Davis, Pamela J.; Kerkstra, Aonne; van Bekkum, Herman. J. Chem. Educ. 1999, 76, 1417.
Ion Exchange |
Catalysis |
Quantitative Analysis |
Water / Water Chemistry |
Consumer Chemistry |
Applications of Chemistry
A Precise Method for Determining the CO2 Content of Carbonate Materials  Donald L. Pile, Alana S. Benjamin, Klaus S. Lackner, Christopher H. Wendt, and Darryl P. Butt
The design and use of a buret apparatus for CO2 gas capture and mass determination are described. The derivation of a comprehensive equation to determine the CO2 mass and percent carbonation of the material is outlined. Experimental factors such as temperature and pressure, including elevation effects, and apparatus parameters are discussed and incorporated into one general equation.
Pile, Donald L.; Benjamin, Alana S.; Lackner, Klaus S.; Wendt, Christopher H.; Butt, Darryl P. J. Chem. Educ. 1998, 75, 1610.
Laboratory Equipment / Apparatus |
Gases |
Quantitative Analysis
Precision and Accuracy in Measurements: A Tale of Four Graduated Cylinders  Richard S. Treptow
The concepts of precision and accuracy help students understand that uncertainty accompanies even our best scientific measurements. A model experiment can be used to distinguish the two terms. The experiment uses four graduated cylinders which give measurements of different accuracy and precision. Such terms as mean, range, standard deviation, error, and true value are defined through an illustration.
Treptow, Richard S. J. Chem. Educ. 1998, 75, 992.
Quantitative Analysis |
Chemometrics
Using Chemistry and Color To Analyze Household Products: A 10-12 Hour Laboratory Project at the General Chemistry Level  Wayne B. Bosma
A sequence of experiments using a UV-Vis spectrometer to identify food colorings and to measure the pH of soft drinks allowing qualitative and quantitative measurements to be made.
Bosma, Wayne B. J. Chem. Educ. 1998, 75, 214.
Consumer Chemistry |
Spectroscopy |
UV-Vis Spectroscopy |
Dyes / Pigments |
pH |
Qualitative Analysis |
Quantitative Analysis
The Effectiveness of Computer-Assissted Learning in the Teaching of Quantitative Volumetric Analysis Skills in a First-Year University Course  Carmel McNaught, Heather Grant, Paul Fritze, Janet Barton, Peter McTigue, and Robert Prosser
Study of the effectiveness of a computerized tutorial involving titration-related laboratory procedures at improving the laboratory skills of first-year students with a weak chemistry background.
McNaught, Carmel; Grant, Heather; Fritze, Paul; Barton, Janet; McTigue, Peter; Prosser, Robert. J. Chem. Educ. 1995, 72, 1003.
Quantitative Analysis |
Titration / Volumetric Analysis
Inventory Control: Sampling and Analyzing Air Pollution: An Apparatus Suitable for Use in Schools  Rockwell, Dean M.; Hansen, Tony
Two variations of an air sampler and analyzer that are inexpensive, easy to construct, and highly accurate.
Rockwell, Dean M.; Hansen, Tony J. Chem. Educ. 1994, 71, 318.
Atmospheric Chemistry |
Laboratory Equipment / Apparatus |
Quantitative Analysis
Laboratory Practical Examinations in Quantitative Analysis: Evaluating Accuracy, Precision, and Speed  Frey, John E.
Organizing and grading an analytical lab practicum.
Frey, John E. J. Chem. Educ. 1994, 71, 51.
Quantitative Analysis
Estimation of carbonate content of base by Gran's method: A semimicroscale experiment.  Vesala, Antti.
Carbonate content of a base is determined by titration with HCl using small scale samples and additions.
Vesala, Antti. J. Chem. Educ. 1992, 69, 577.
Quantitative Analysis |
Titration / Volumetric Analysis
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
Estimating energy outputs of fuels  Baird, N. Colin
Which is the best fuel in terms of heat energy output: coal, natural gas, fuel oil, hydrogen, or alcohol? It is possible to obtain a semi quantitative estimate of the heat generated by combustion of a fuel from the balanced chemical equation alone.
Baird, N. Colin J. Chem. Educ. 1983, 60, 356.
Reactions |
Green Chemistry |
Thermodynamics |
Alcohols |
Alkanes / Cycloalkanes |
Geochemistry |
Stoichiometry |
Quantitative Analysis
Determination of sodium in salt substitute by flame emission spectroscopy  Goodney, David E.
Using this procedure a student should be able to report the ppm Na in a salt substitute with an error of a few percent.
Goodney, David E. J. Chem. Educ. 1982, 59, 875.
Food Science |
Consumer Chemistry |
Quantitative Analysis |
Atomic Spectroscopy |
Atomic Properties / Structure
The construction of inexpensive digital pH meters  Warner, Brian D.; Boehme, Gerhard; Pool, Karl L.
Parts list and circuit diagram for a low-cost pH meter.
Warner, Brian D.; Boehme, Gerhard; Pool, Karl L. J. Chem. Educ. 1982, 59, 65.
Laboratory Equipment / Apparatus |
pH |
Acids / Bases |
Quantitative Analysis
Another approach to titration curves: Which is the dependent variable?  Willis, Christropher J.
In this paper, an approach to titration curves is described which eliminates common stumbling blocks in achieving student understanding.
Willis, Christropher J. J. Chem. Educ. 1981, 58, 659.
Quantitative Analysis |
Titration / Volumetric Analysis
A computerized system for the submission of quantitative analysis laboratory results  Williams, Kathryn R.; Martinez, Zaida C.
A Fortran program that allows students to submit their quantitative analysis laboratory results.
Williams, Kathryn R.; Martinez, Zaida C. J. Chem. Educ. 1977, 54, 94.
Quantitative Analysis
Semi-micro ion-exchange in the freshman laboratory  Olson, M. V.; Crawford, J. M.
An integrated unit of lab work in which students start with qualitative and standard quantitative experiments and then progress to more sophisticated biological and environmental applications, including analyses of sea water and blood plasma.
Olson, M. V.; Crawford, J. M. J. Chem. Educ. 1975, 52, 546.
Ion Exchange |
Microscale Lab |
Quantitative Analysis |
Qualitative Analysis |
Applications of Chemistry
Introduction to quantitative chemical analysis (Grunwald, Ernest; Kirshenbaum, Louis J.)  Wehry, Earl L.

Wehry, Earl L. J. Chem. Educ. 1973, 50, A184.
Quantitative Analysis
A simple recording titrator  Walton, Harold F.
Design and use of a simple recording titrator.
Walton, Harold F. J. Chem. Educ. 1973, 50, 795.
Laboratory Equipment / Apparatus |
Titration / Volumetric Analysis |
Quantitative Analysis
Computer aided grading of quantitative unknowns  Jones, D. E.; Lytle, F. E.
A system for simplifying and standardizing the grading of quantitative unknowns.
Jones, D. E.; Lytle, F. E. J. Chem. Educ. 1973, 50, 285.
Quantitative Analysis |
Laboratory Management
The aspirin project. Laboratory experiments for introductory chemistry  Brown, David B.; Friedman, Lawrence B.
This laboratory project involves the synthesis, characterization, and study of some reactions of acetylsalicylic acid, and the comparison of acetylsalicylic acid with the major components of various commercial brands of aspirin tablets.
Brown, David B.; Friedman, Lawrence B. J. Chem. Educ. 1973, 50, 214.
Constitutional Isomers |
Synthesis |
Acids / Bases |
UV-Vis Spectroscopy |
Quantitative Analysis
Air pollution measurements in the freshman laboratory  Suplinkas, Raymond J.
Summarizes the equipment and procedures used to measure air pollution (NO, NO2, and O3) in a freshman chemistry laboratory.
Suplinkas, Raymond J. J. Chem. Educ. 1972, 49, 24.
Atmospheric Chemistry |
Quantitative Analysis
A thin-layer chromatography experiment for general chemistry  Lincoln, S.; Pohl, R. A.; Haworth, D. T.
Describes an experiment that can be used to separate the classical groups of inorganic cations thin layer chromatography analysis using microcrystalline cellulose.
Lincoln, S.; Pohl, R. A.; Haworth, D. T. J. Chem. Educ. 1970, 47, 401.
Chromatography |
Separation Science |
Thin Layer Chromatography |
Quantitative Analysis
Theoretical error in acid-base titrations  Butcher, John; Quintus, Fernanado
The purpose of this report is to describe simple derivations of equations for titration error calculations for a number of acid-base titrations, and to show error curves for some typical cases.
Butcher, John; Quintus, Fernanado J. Chem. Educ. 1966, 43, 546.
Titration / Volumetric Analysis |
Quantitative Analysis |
Acids / Bases
A simple constant-flow device for use in titrimetric analysis  van Swaay, M.; Lolley, R. F.
Presents the design and an evaluation of performance for a simple constant-flow device for use in titrimetric analysis.
van Swaay, M.; Lolley, R. F. J. Chem. Educ. 1965, 42, 381.
Laboratory Equipment / Apparatus |
Titration / Volumetric Analysis |
Quantitative Analysis |
Instrumental Methods
A laboratory practical examination in quantitative chemistry  MacNevin, William
Reports on the results of a laboratory practical examination in quantitative chemistry that eliminates or reduces common problems found with such assessments.
MacNevin, William J. Chem. Educ. 1961, 38, 144.
Quantitative Analysis
Weight titrations revived  Thoburn, James M.
With the use of syringes and automatic balances, it is possible to make weight titrations more practical than ordinary volumetric determinations.
Thoburn, James M. J. Chem. Educ. 1959, 36, 616.
Titration / Volumetric Analysis |
Quantitative Analysis |
Laboratory Equipment / Apparatus
A formula for indirect gravimetry  Fiekers, B. A.
Derivation of a formula for indirect gravimetry and application to a sample problem.
Fiekers, B. A. J. Chem. Educ. 1956, 33, 575.
Gravimetric Analysis |
Chemometrics |
Quantitative Analysis
Quantitative work in freshman chemistry  Gabriel, Henry
In order to demonstrate to the student the need for precise measurement, keen observation, and mathematical formulation, a quantitative approach to work in the laboratory is essential.
Gabriel, Henry J. Chem. Educ. 1956, 33, 42.
Quantitative Analysis
Teaching analytical chemistry  Lykken, Louis
Offers suggestions regarding curriculum and instruction in analytical chemistry, from first-year preparation through senior-level coursework.
Lykken, Louis J. Chem. Educ. 1951, 28, 440.
Quantitative Analysis