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NCERT Exemplar · Q44

Q.Give three points of differences between inductive effect and resonance effect.

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The inductive effect involves permanent, partial electron displacement through sigma bonds, decreasing with distance, while the resonance effect involves permanent, complete electron delocalisation through pi bonds (or lone pairs) in conjugated systems, extending throughout.

Both the inductive effect and the resonance effect are fundamental concepts in organic chemistry that explain how electron distribution within a molecule influences its properties, such as acidity, basicity, and reactivity. While both involve electron shifts, the nature of these shifts, the type of electrons involved, and their transmission mechanisms are distinctly different. Understanding these differences is crucial for predicting molecular behaviour.

Here are three key points of difference between the inductive effect and the resonance effect:

  1. Nature of Electron Involvement and Displacement:

    • Inductive Effect: This effect involves the partial displacement of σ\sigma (sigma) bond electrons towards the more electronegative atom in a bond. It arises from the difference in electronegativity between two atoms forming a covalent bond. The electrons are not fully transferred but are merely pulled closer to the more electronegative atom, creating partial positive (δ+\delta+) and partial negative (δ−\delta-) charges.
    • Resonance Effect: This effect involves the complete delocalisation of π\pi (pi) bond electrons or non-bonding (lone pair) electrons within a conjugated system. In resonance, electrons are not confined to a single bond or atom but are spread over three or more atoms, leading to the formation of multiple resonance structures that collectively describe the true electron distribution (the resonance hybrid).
  2. Transmission Medium and Mechanism:

    • Inductive Effect: The inductive effect is transmitted through the chain of sigma bonds. The partial charge created on one atom induces a partial charge on the adjacent atom, which in turn induces a partial charge on the next, and so on. This transmission occurs sequentially along the carbon chain.
    • Resonance Effect: The resonance effect is transmitted through conjugated pi systems. This requires the presence of alternating single and multiple bonds, or a lone pair adjacent to a pi bond, allowing for the overlap of p-orbitals and the delocalisation of electrons across the entire conjugated system. It does not rely on sequential induction through sigma bonds.
  3. Permanence and Distance Dependence:

    • Inductive Effect: It is a permanent effect, meaning it is always present in a molecule with polar covalent bonds. However, its magnitude decreases rapidly with increasing distance from the electronegative atom. It is significant only over a few bonds (typically 3-4 bonds) and becomes negligible thereafter.
    • Resonance Effect: It is also a permanent effect, inherent to molecules with conjugated systems. Unlike the inductive effect, its influence extends throughout the entire conjugated system and does not diminish significantly with distance within that system. The delocalisation is uniform across all atoms involved in the conjugation. …

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