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For the textbook, chapter, and section you specified we found
29 Videos
19 Assessment Questions
8 Molecular Structures
3 Journal Articles
25 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
View all 29 results
Assessment Questions: First 3 results
Bonding : MatchBondStrength (8 Variations)
Match each of the following molecules to the best energy value for each bond. Do not use the table of bond energies in your book, but predict these values using your knowledge of bond length and bond strength.
Possible energies are: 300 kJ/mol, 330 kJ/mol, 415 kJ/mol and 950 kJ/mol.

Covalent Bonding
Bonding : EnergyBreakAllBonds (10 Variations)
Use the bond energies given in to determine the total energy needed to break all of the bonds in C3H6. (Do not use ring structures.)
Covalent Bonding |
Calorimetry / Thermochemistry
Bonding : GeneralResonIsomer (4 Variations)
Which of the following statements is true?
Resonance Theory |
Covalent Bonding
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Molecular Structures: First 3 results
Beryllium Hydride BeH2

3D Structure

Link to PubChem

VSEPR Theory |
Covalent Bonding

Silicon Tetrafluoride SiF4

3D Structure

Link to PubChem

VSEPR Theory |
Covalent Bonding |
Gases

Silane SiH4

3D Structure

Link to PubChem

VSEPR Theory |
Covalent Bonding |
Gases

View all 8 results
Journal Articles: 3 results
Pedagogies:
Distribution of atomic s character in molecules and its chemical implications  Bent, Henry A.
Explains the shape of simple molecules using the distribution of atomic s character.
Bent, Henry A. J. Chem. Educ. 1960, 37, 616.
Atomic Properties / Structure |
Molecular Properties / Structure |
Covalent Bonding
Some recent developments in the theory of bonding in complex compounds of the transition metals  Sutton, Leslie E.
Examines the ligand field and the molecular orbital theories of complexes, particularly involving transition metals.
Sutton, Leslie E. J. Chem. Educ. 1960, 37, 498.
Noncovalent Interactions |
Transition Elements |
Metals |
Crystal Field / Ligand Field Theory |
Coordination Compounds |
MO Theory |
Covalent Bonding
Dynamic projector display for atomic orbitals and the covalent bond  Thompson, H. Bradford
An overhead projector is used to display the combination of simple atomic orbitals to form hybrid and molecular orbitals.
Thompson, H. Bradford J. Chem. Educ. 1960, 37, 118.
Atomic Properties / Structure |
Covalent Bonding
Other Resources: First 3 results
The Covalent Bond  Ed Vitz, John W. Moore
A section of ChemPrime, the Chemical Educations Digital Library's free General Chemistry textbook.
Covalent Bonding
Sigma and Pi Bonds  Ed Vitz, John W. Moore
A section of ChemPrime, the Chemical Educations Digital Library's free General Chemistry textbook.
Covalent Bonding
Polar Covalent Bonds  Ed Vitz, John W. Moore
A section of ChemPrime, the Chemical Educations Digital Library's free General Chemistry textbook.
Covalent Bonding
View all 25 results