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NCERT Exemplar · Q81

Q.Match the structures of compounds given in Column I with the classes of compounds given in Column II.
Column I:

(i) CH3−CH∣X−CH3\mathrm{CH_3-\underset{\underset{\displaystyle X}{|}}{CH}-CH_3}
(ii) CH2=CH−CH2−X\mathrm{CH_2{=}CH-CH_2-X}
(iii)
Aryl halide, C6H5-X
Figure
(iv) CH2=CH−X\mathrm{CH_2{=}CH-X}
Column II:
(a) Aryl halide
(b) Alkyl halide
(c) Vinyl halide
(d) Allyl halide
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The key is to identify the carbon directly attached to the halogen (X) and classify it by its hybridization and the type of carbon skeleton. The matches are: (i)→ (b), (ii)→ (d), (iii)→ (a), (iv)→ (c).

This question tests your grasp of structural isomerism in organic halides — specifically, how the position of the halogen relative to a double bond or an aromatic ring changes the compound’s classification. The names (alkyl, vinyl, allyl, aryl) aren’t arbitrary; they tell you exactly what kind of carbon the halogen is bonded to.

Let’s break each one down.


  1. Compound (i): CH3−CH∣X−CH3\mathrm{CH_3-\underset{\underset{\displaystyle X}{|}}{CH}-CH_3}

    The halogen X is attached to a carbon that is sp³ hybridized and part of a saturated chain (no double bonds, no aromatic ring). This carbon is simply an alkyl carbon.

    → This is an alkyl halide.

    Match: (i) → (b).

  2. Compound (ii): CH2=CH−CH2−X\mathrm{CH_2{=}CH-CH_2-X}

    Here, X is attached to a carbon that is one carbon away from a C=C double bond. That carbon is sp³ hybridized, but it’s “allylic” — meaning it’s adjacent to a vinylic carbon. The name allyl halide specifically refers to a halogen on a carbon next to a double bond.

    → This is an allyl halide.

    Match: (ii) → (d).

  3. Compound (iii): C6H5−X\mathrm{C_6H_5-X} (halobenzene)

    The halogen is directly attached to a carbon of a benzene ring. That carbon is part of an aromatic system (sp² hybridized, but in a ring with delocalized π electrons). The term aryl halide is used when X is bonded directly to an aromatic ring.

    → This is an aryl halide.

    Match: (iii) → (a).

  4. Compound (iv): CH2=CH−X\mathrm{CH_2{=}CH-X} …

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