10.9
A molecular orbital diagram represents the relative energies of the constituent atomic orbitals, shown on the left and right, and the resultant molecular orbitals, shown in the middle.
As with atomic orbitals, each molecular orbital can accommodate a maximum of two electrons with opposite spins.The electrons from the overlapping atomic orbitals are placed in the molecular orbitals from lowest to highest energy, following Hund’s rule as needed.
For example, the two electrons of molecular hydrogen are both in the lower-energy σ1s bonding molecular orbital.
Molecular orbital theory predicts the stability of covalent bonds from the bond order of the molecule, which is the number of electrons in bonding orbitals minus the number of electrons in antibonding orbitals divided by two.
A bond order of greater than zero indicates that one or more covalent bonds can exist, whereas a bond order of zero means that bonds should not exist. Molecular hydrogen has a bond order of one and a single bond between the hydrogens. However, covalently bound dihelium does not exist as it would have a bond order of zero.
Molecular orbital diagrams typically only include valence orbitals because the contributi
The relative energy levels of atomic and molecular orbitals are typically shown in a molecular orbital diagram. For…
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