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Q.Determine the magnetic property of the O2 molecule on the basis of linear combination of atomic orbitals. OR On the basis of linear combination of atomic orbitals, show that the H2 molecule exists but He2 does not. Why?

Madhya Pradesh MpbseMP Board Higher Secondary (Class 11) 2025Subjective· 4mImportance★★★★★
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By MOT, O2's 16 electrons fill molecular orbitals leaving two unpaired electrons in the pi*2p antibonding orbitals, making O2 paramagnetic -- a result classical (Lewis) structures cannot explain.

Molecular orbital theory (MOT) forms molecular orbitals as linear combinations of atomic orbitals (LCAO): each pair of atomic orbitals combines to give one bonding (lower energy) and one antibonding (higher energy) molecular orbital.

Oxygen has atomic number 8, so an O2 molecule has 16 electrons total. Filling molecular orbitals in order of increasing energy (for O2, the sigma2pz orbital is lower in energy than the pi2p orbitals):

sigma1s2 sigma1s2 sigma2s2 sigma2s2 sigma2pz2 (pi2px2 = pi2py2) (pi2px1 = pi2py1) sigma*2pz0

The last 2 electrons (from the remaining 4 after filling up to pi2p4) are distributed one each into the two degenerate pi2px and pi2py antibonding orbitals (Hund's rule), leaving them singly occupied/unpaired.

Bond order = 1/2 (electrons in bonding MOs - electrons in antibonding MOs) = 1/2 (10 - 6) = 2, consistent with the O=O double bond.

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