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Q.Given below are two statements labelled as Assertion (A) and Reason (R). Select the most appropriate answer from the options given below : Assertion (A) : Nucleophilic substitution of iodoethane is easier than chloroethane. Reason (R) : Bond enthalpy of C-I bond is less than that of C-Cl bond. (A) Both (A) and (R) are true and (R) is the correct explanation of (A). (B) Both (A) and (R) are true, but (R) is not the correct explanation of (A). (C) (A) is true, but (R) is false. (D) (A) is false, but (R) is true.

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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The ease of nucleophilic substitution depends on the leaving group's ability to depart. A weaker C–I bond (lower bond enthalpy) makes iodide a better leaving group than chloride, so both Assertion and Reason are true, and Reason correctly explains Assertion.

Concept first: what makes a good leaving group in nucleophilic substitution?

In an SN1S_N1 or SN2S_N2 reaction, the leaving group (halide ion) must break away from the carbon. The weaker the carbon–halogen bond, the easier it is to break — so the halide leaves more readily. Bond enthalpy (bond dissociation energy) is a direct measure of bond strength: lower bond enthalpy means a weaker bond.

Iodine is a larger atom than chlorine, so the C–I bond is longer and weaker. The C–I bond enthalpy is about 240 kJ/mol, while the C–Cl bond enthalpy is about 330 kJ/mol. That difference is the key.

Now let’s check each statement.

  1. Assertion (A): "Nucleophilic substitution of iodoethane is easier than chloroethane."

    This is true. In both SN1S_N1 and SN2S_N2 mechanisms, the rate-determining step involves breaking the C–X bond (in SN1S_N1, it’s the first step; in SN2S_N2, it’s the concerted step where the leaving group departs). Since the C–I bond is weaker, iodoethane reacts faster than chloroethane under identical conditions. Iodide is a better leaving group than chloride.

  2. Reason (R): "Bond enthalpy of C–I bond is less than that of C–Cl bond."

    This is also true. Bond enthalpy decreases down the halogen group: C–F > C–Cl > C–Br > C–I. The C–I bond is indeed weaker.

  3. Does (R) correctly explain (A)? …

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