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Q.Use molecular orbital theory to explain why He2 does not exist.

Manipur CohsemCouncil of Higher Secondary Education, Manipur (Higher Secondary 1st Year) 2022Subjective· 2mImportance★★★★★
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Each He atom contributes 2 electrons (4 total for He2). Filling molecular orbitals in order gives σ1s² σ*1s², so bonding electrons (2) equal antibonding electrons (2), giving bond order = 0 — no net bonding, so He2 is unstable and does not exist as a stable molecule.

Each helium atom has the electronic configuration 1s². For a hypothetical He2 molecule, the total number of electrons to be filled into molecular orbitals is 2 + 2 = 4.

According to molecular orbital theory, combining two 1s atomic orbitals gives one bonding molecular orbital (σ1s) and one antibonding molecular orbital (σ*1s), with σ1s lower in energy. Filling the 4 electrons in order of increasing energy:

He2:(σ1s)2(σ∗1s)2He_2: (\sigma 1s)^2 (\sigma^*1s)^2

Bond order is calculated as:

Bond order=12(Nb−Na)\text{Bond order} = \frac{1}{2}\left(N_b - N_a\right)

where Nb = number of electrons in bonding molecular orbitals and Na = number of electrons in antibonding molecular orbitals.

Here, Nb = 2 (in σ1s) and Na = 2 (in σ*1s), so:

Bond order=12(2−2)=0\text{Bond order} = \frac{1}{2}(2 - 2) = 0

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