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NCERT Exemplar · Q56

Q.Assertion (A): Energy of resonance hybrid is equal to the average of energies of all canonical forms.
Reason (R): Resonance hybrid cannot be presented by a single structure.

(i) Both A and R are correct and R is the correct explanation of A.
(ii) Both A and R are correct but R is not the correct explanation of A.
(iii) Both A and R are not correct.
(iv) A is not correct but R is correct.
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The energy of a resonance hybrid is lower than the average of its canonical forms (due to resonance stabilisation), so Assertion (A) is false. The Reason (R) — that a resonance hybrid cannot be represented by a single structure — is true. Hence the correct choice is (iv).

The key to this question lies in understanding what resonance actually means for the energy of a molecule. Many students mistakenly think the resonance hybrid is an "average" of the canonical forms in every sense — including energy. That is not correct.

Let’s break it down.

  1. What is a resonance hybrid?

    When a molecule cannot be accurately represented by a single Lewis structure, we draw multiple canonical (contributing) structures. The real molecule is a resonance hybrid — a quantum mechanical superposition of these canonical forms. No single canonical structure exists on its own; the hybrid is a distinct, stabilised state.

  2. Energy of the resonance hybrid vs. the canonical forms

    The resonance hybrid has an energy lower than the energy of any individual canonical structure. This energy lowering is called resonance stabilisation energy.

    Crucially, the hybrid’s energy is not the arithmetic mean of the energies of the canonical forms. If it were, there would be no net stabilisation — the hybrid would be exactly as stable as the "average" structure, which contradicts experimental evidence (e.g., benzene is far more stable than any single Kekulé structure).

    Watch out

    A common mistake is to think "average" applies to energy because it applies to bond lengths and charge distribution. Bond lengths in a resonance hybrid are indeed an average of the canonical forms, but energy is not — the hybrid is always more stable (lower in energy) than any canonical form.

  3. Why the Reason (R) is correct …

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