template for Bz and use Figure 2 for O2. Be sure to label the molecular orbitals, including symmetry/parity labels (if appropriate). Based on these diagrams, determine the following: a. The bond order of each molecule. b. Label the HOMO and LUMO levels for each molecule. c. Classify each molecule as paramagnetic or diamagnetic. d. Which molecule would you expect to have the longer bond length? e. Which molecule would you expect to have the greater dissociation energy? – 2p 2p 2p 2p – 2s 2s 2s 2s Atomic orbitals • Molecular orbitals | Energy

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Draw the orbital energy diagrams for both the B2 and O, molecules. You may use Figure 1 as your
template for B2 and use Figure 2 for 02. Be sure to label the molecular orbitals, including symmetry/parity labels
(if appropriate). Based on these diagrams, determine the following:
a. The bond order of each molecule.
b. Label the HOMO and LUMO levels for each molecule.
c. Classify each molecule as paramagnetic or diamagnetic.
d. Which molecule would you expect to have the longer bond length?
e. Which molecule would you expect to have the greater dissociation energy?
2p
2p
2p –
---2p
2s
25
2s
2s
Atomic orbitals - Molecular orbitals
Figure 1
Figure 2
Energy
|
|
Transcribed Image Text:Draw the orbital energy diagrams for both the B2 and O, molecules. You may use Figure 1 as your template for B2 and use Figure 2 for 02. Be sure to label the molecular orbitals, including symmetry/parity labels (if appropriate). Based on these diagrams, determine the following: a. The bond order of each molecule. b. Label the HOMO and LUMO levels for each molecule. c. Classify each molecule as paramagnetic or diamagnetic. d. Which molecule would you expect to have the longer bond length? e. Which molecule would you expect to have the greater dissociation energy? 2p 2p 2p – ---2p 2s 25 2s 2s Atomic orbitals - Molecular orbitals Figure 1 Figure 2 Energy | |
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