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For the textbook, chapter, and section you specified we found
35 Videos
29 Assessment Questions
6 Journal Articles
86 Other Resources
Videos: First 3 results
Standing Waves on a Wave Demonstrator (with frequency)  
The relationship between frequency and wavelength for standing waves on a 0.90 m short-rod wave demonstrator is explored. The frequency is displayed at the bottom of the screen.
Quantum Chemistry
Energy Dissipation, Constructive and Destructive Interference  
Important wave phenomena include energy dissipation (wave damping) and wave interference as seen in the following slinky demonstrations.
Quantum Chemistry
Waves Consisting of Single Pulses  
Characteristics of single pulse waves include direction of displacement and wave speed illustrated in the following slinky demonstrations.
Quantum Chemistry
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Assessment Questions: First 3 results
Atomic_Structure_and_the_Periodic_Table : MatchElectronConfig (10 Variations)
Match the following electron configurations to the correct atoms or ions. Possible choices are: Br, Ca, Cl-, Mg2+, Mn, and Ti2+.
Atomic Properties / Structure
Atomic_Structure_and_the_Periodic_Table : ValenceTotalElectrons (10 Variations)
Given the following electron configuration:
1s22s22p63s2
1. How many total electrons are in this species? {1:SHORTANSWER:~=12}

2. How many valence electrons are in this species? {1:SHORTANSWER:~=2}


Atomic Properties / Structure
Atomic_Structure_and_the_Periodic_Table : AtomicNumElecConfig (10 Variations)
An element X has atomic number 13. Which of the following statements about the electron configuration of X is correct?
Atomic Properties / Structure
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Journal Articles: First 3 results.
Pedagogies:
E = mc2 for the Chemist: When Is Mass Conserved?  Richard S. Treptow
Einstein's famous equation is frequently misunderstood in textbooks and popular science literature. Its correct interpretation is that mass and energy are different measures of a single quantity known as massenergy, which is conserved in all processes.
Treptow, Richard S. J. Chem. Educ. 2005, 82, 1636.
Atomic Properties / Structure |
Nuclear / Radiochemistry |
Theoretical Chemistry |
Thermodynamics
Einstein Revisited  Leonard Fine
Examines Einstein's contributions to chemistry, particularly his work on the photoelectric effect, molecular dimensions, and Brownian motion.
Fine, Leonard. J. Chem. Educ. 2005, 82, 1601.
Quantum Chemistry |
Kinetic-Molecular Theory
Turning on the Light: Lessons from Luminescence  Patricia B. OHara, Carol Engelson, and Wayne St. Peter
The goal of this article is to provide secondary school science teachers with a background in an array of luminescent phenomena including fluorescence, phosphorescence, and chemiluminescence that will enable them to teach their students fundamental properties of light and matter. Instructions for building and operating a simple spectrofluorometer and five detailed lesson plans are provided in the Supplemental Material for experiments that utilize these processes.
O'Hara, Patricia B.; Engelson, Carol; St. Peter, Wayne. J. Chem. Educ. 2005, 82, 49.
Fluorescence Spectroscopy |
Forensic Chemistry |
Photochemistry |
Atomic Properties / Structure
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Other Resources: First 3 results
The Nature of Electromagnetic Radiation  Ed Vitz, John W. Moore
A section of ChemPrime, the Chemical Educations Digital Library's free General Chemistry textbook.
Atomic Properties / Structure
Tones on a Drum and Orbital Wavefunctions  Ed Vitz
A section of ChemPrime, the Chemical Educations Digital Library's free General Chemistry textbook.
Quantum Chemistry |
Atomic Properties / Structure
Wave Mechanics  Ed Vitz, John W. Moore
A section of ChemPrime, the Chemical Educations Digital Library's free General Chemistry textbook.
Quantum Chemistry
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