Q.Explain the concept of Resonance with suitable examples and define Resonance energy.
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Start your 14-day free trial to unlock the full solution →Resonance is when a molecule/ion is described by two or more valid Lewis structures differing only in electron arrangement, the real molecule being a hybrid of all of them; resonance energy measures the extra stability of this hybrid over its most stable single contributing structure.
Concept of resonance: For certain molecules and ions, a single Lewis (dot) structure cannot fully or accurately represent the true electronic structure and properties (such as equal bond lengths where a single structure would predict unequal ones). In such cases, two or more valid Lewis structures — called canonical forms or resonance structures — can be drawn. These structures have the same arrangement of atoms and the same number of paired/unpaired electrons, differing ONLY in how the electrons (particularly pi-bond and lone-pair electrons) are distributed.
The real molecule/ion is not any single one of these structures, nor does it flip between them; instead it is a single, unchanging resonance hybrid — a weighted blend of all the contributing structures — which is generally more stable than any individual contributing structure.
Examples:
- Ozone (O3): can be drawn with the terminal O=O double bond on either side, giving two equivalent resonance structures; the real O-O bond lengths in ozone are both equal and intermediate between a single and double bond.
- Carbonate ion (CO3^2-): three equivalent resonance structures can be drawn, each with the C=O double bond on a different oxygen; the real ion has three identical C-O bonds (bond order 1 1/3), not one double and two single bonds.
- Benzene (C6H6): the two Kekule structures (with alternating double bonds arranged one way or the other) are resonance structures; the real molecule has six identical C-C bonds of intermediate (1.5) bond order, and is significantly more stable than either Kekule structure alone would predict. …
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