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NCERT Exemplar · Q11

Q.In which of the following compounds the carbon marked with asterisk is expected to have greatest positive charge?

(i) *CH3—CH2—Cl
(ii) *CH3—CH2—Mg^+Cl^-
(iii) *CH3—CH2—Br
(iv) *CH3—CH2—CH3
Meghalaya MboseMCQ· 1mImportance★★★★★
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The carbon bearing the greatest positive charge is the one attached to the most electron-withdrawing group. Since Cl is more electronegative than Br, Mg, or C, the asterisk carbon in *CH₃—CH₂—Cl carries the largest partial positive charge. Answer: (i)

Understanding Inductive Effect and Partial Charge

When a carbon atom bonds to an atom or group with different electronegativity, electron density shifts along the σ-bond. This transmission of charge through the chain is the inductive effect.

An electronegative atom (like a halogen) pulls electrons toward itself, creating a partial positive charge (δ+\delta^+) on the carbon it's attached to. The more electronegative the substituent, the stronger the electron withdrawal and the larger the positive charge on carbon.

Conversely, an electropositive group (like a metal) pushes electrons toward carbon, creating a partial negative charge (δ−\delta^-).

The question asks which asterisk carbon has the greatest positive charge, so we need to identify which substituent withdraws electrons most strongly from the CHX3\ce{CH3} group.

Step-by-Step Analysis

  1. *Option (i): CH₃—CH₂—Cl

    The CHX2\ce{CH2} group is bonded to chlorine. Chlorine is highly electronegative (EN = 3.16), so it withdraws electrons from the CHX2\ce{CH2} carbon. This makes CHX2\ce{CH2} electron-deficient, which in turn pulls electrons from the *CH₃ carbon through the chain. The asterisk carbon acquires a partial positive charge.

  2. *Option (ii): CH₃—CH₂—Mg⁺Cl⁻

    This is a Grignard reagent. The carbon-magnesium bond is polarised CXδ−−MgXδ+\ce{C^{\delta-}—Mg^{\delta+}} because carbon is more electronegative than magnesium (EN of Mg ≈ 1.31). Magnesium donates electron density to the CHX2\ce{CH2} carbon, making it electron-rich. This electron density is then transmitted to the *CH₃ carbon, giving it a partial negative charge—opposite to what we want.

  3. *Option (iii): CH₃—CH₂—Br

    Bromine is electronegative (EN = 2.96), but less so than chlorine. It withdraws electrons from CHX2\ce{CH2}, which in turn withdraws from *CH₃. The asterisk carbon has a partial positive charge, but smaller than in option (i).

  4. *Option (iv): CH₃—CH₂—CH₃

    All three groups are alkyl (carbon chains). Carbon atoms have identical electronegativity, so there is no significant charge separation. The asterisk carbon is essentially neutral.

Comparing the Magnitudes …

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