Use the molecular orbital theory to determine the ground state electron configuration of F, and F. Molecule Ground state electron configuration 2 2 4 F2 (02) (02,*) (02p) (T2p) 2 (#2p) (021) (02*) Answer Bank 2 Then, use the molecular orbital theory to determine the bond order and magnetism of the molecules. F, bond order: F bond order: F, is O diamagnetic. O paramagnetic. F is O diamagnetic. O paramagnetic.

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Use the molecular orbital theory to determine the ground state electron configuration of \( F_2 \) and \( F_2^+ \).

**Molecule** | **Ground state electron configuration**
--- | ---
\( F_2 \) | \( (\sigma_{1s})^2 (\sigma_{1s}^*)^2 (\sigma_{2s})^2 (\sigma_{2s}^*)^2 (\sigma_{2p_z})^2 (\pi_{2p_x})^2 (\pi_{2p_y})^2 (\pi_{2p_x}^*)^0 (\pi_{2p_y}^*)^0 (\sigma_{2p_z}^*)^0 \)
\( F_2^+ \) | \( (\sigma_{1s})^2 (\sigma_{1s}^*)^2 (\sigma_{2s})^2 (\sigma_{2s}^*)^2 (\sigma_{2p_z})^2 (\pi_{2p_x})^2 (\pi_{2p_y})^2 (\pi_{2p_x}^*)^1 (\pi_{2p_y}^*)^0 (\sigma_{2p_z}^*)^0 \)

**Answer Bank**
1 | 2 | 3 | 4 | 5

Then, use the molecular orbital theory to determine the bond order and magnetism of the molecules.

\( F_2 \) bond order: [ ]

\( F_2^+ \) bond order: [ ]

\( F_2 \) is
- ● diamagnetic. 
- ○ paramagnetic.

\( F_2^+ \) is
- ○ diamagnetic.
- ○ paramagnetic.
Transcribed Image Text:Use the molecular orbital theory to determine the ground state electron configuration of \( F_2 \) and \( F_2^+ \). **Molecule** | **Ground state electron configuration** --- | --- \( F_2 \) | \( (\sigma_{1s})^2 (\sigma_{1s}^*)^2 (\sigma_{2s})^2 (\sigma_{2s}^*)^2 (\sigma_{2p_z})^2 (\pi_{2p_x})^2 (\pi_{2p_y})^2 (\pi_{2p_x}^*)^0 (\pi_{2p_y}^*)^0 (\sigma_{2p_z}^*)^0 \) \( F_2^+ \) | \( (\sigma_{1s})^2 (\sigma_{1s}^*)^2 (\sigma_{2s})^2 (\sigma_{2s}^*)^2 (\sigma_{2p_z})^2 (\pi_{2p_x})^2 (\pi_{2p_y})^2 (\pi_{2p_x}^*)^1 (\pi_{2p_y}^*)^0 (\sigma_{2p_z}^*)^0 \) **Answer Bank** 1 | 2 | 3 | 4 | 5 Then, use the molecular orbital theory to determine the bond order and magnetism of the molecules. \( F_2 \) bond order: [ ] \( F_2^+ \) bond order: [ ] \( F_2 \) is - ● diamagnetic. - ○ paramagnetic. \( F_2^+ \) is - ○ diamagnetic. - ○ paramagnetic.
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