Using only the orbitals shown in the diagram, match each MO (I-IV) with the type of interaction it displays and the most important factor in determining its strength. V [ Choose ] Bonding due to lack of symmetry matching orbitals Mostly non-bonding due to large energy separation II Anti-bonding due to lack of symmetry matching orbitals Non-bonding due to lack of symmetry matching orbitals II Bonding due to constructive orbital overlap Antibonding due to destructive orbital overlap

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Using only the orbitals shown in the diagram, match each MO (I-IV) with the type of interaction it
displays and the most important factor in determining its strength.
V [ Choose ]
Bonding due to lack of symmetry matching orbitals
Mostly non-bonding due to large energy separation
II
Anti-bonding due to lack of symmetry matching orbitals
Non-bonding due to lack of symmetry matching orbitals
II
Bonding due to constructive orbital overlap
Antibonding due to destructive orbital overlap
IV
[ Choose]
Transcribed Image Text:Using only the orbitals shown in the diagram, match each MO (I-IV) with the type of interaction it displays and the most important factor in determining its strength. V [ Choose ] Bonding due to lack of symmetry matching orbitals Mostly non-bonding due to large energy separation II Anti-bonding due to lack of symmetry matching orbitals Non-bonding due to lack of symmetry matching orbitals II Bonding due to constructive orbital overlap Antibonding due to destructive orbital overlap IV [ Choose]
IV
P
III
II
I
The above image depicts an MO diagram for a heteronuclear diatomic molecule. Use the Roman
numerals (I-IV) labeling each of the MOs to answer questions below.
Energy
Transcribed Image Text:IV P III II I The above image depicts an MO diagram for a heteronuclear diatomic molecule. Use the Roman numerals (I-IV) labeling each of the MOs to answer questions below. Energy
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