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NCERT Exemplar · Q9

Q.In which of the following molecules carbon atom marked with asterisk (*) is asymmetric?

(a) C∗\mathrm{C^*} bonded to H, I, Br and Cl
Structure (a): the asterisk-marked carbon bonded to H, I, Br and Cl (bromochloroiodomethane; the fourth bond is the H)
Figure
(b) C∗\mathrm{C^*} bonded to D (deuterium), I, Br and Cl
Structure (b): the asterisk-marked carbon bonded to deuterium (shown as 2H), I, Br and Cl
Figure
(c) C∗\mathrm{C^*} bonded to H, OH, C2H5\mathrm{C_2H_5} and CH3\mathrm{CH_3}
Structure (c): butan-2-ol with the asterisk on the carbon bearing H, OH, ethyl and methyl
Figure
(d) C∗\mathrm{C^*} bonded to H, H, C2H5\mathrm{C_2H_5} and CH3\mathrm{CH_3}
Structure (d): butane with the asterisk on C2, which carries two identical hydrogens
Figure
(i) (a), (b), (c),
(d)
(ii) (a), (b),
(c)
(iii) (b), (c),
(d)
(iv) (a), (c), (d)
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A carbon is asymmetric (chiral) only if it has four different substituents. Checking each option: (a) H, I, Br, Cl — all different → chiral; (b) D, I, Br, Cl — all different → chiral; (c) H, OH, C₂H₅, CH₃ — all different → chiral; (d) H, H, C₂H₅, CH₃ — two H’s are identical → not chiral. So the correct set is (a), (b), (c).

The core idea: An asymmetric carbon (chiral centre) is a carbon atom bonded to four different atoms or groups. If any two substituents are identical, the carbon is not asymmetric — it’s a symmetric centre. This is the single rule that decides everything here.

Let’s go through each option one by one.

  1. Option (a): The carbon marked * is bonded to H, I, Br, and Cl.

    These are four different halogen atoms plus hydrogen — all distinct. No two are the same.

    → This carbon is asymmetric.

  2. Option (b): The carbon is bonded to D (deuterium, an isotope of hydrogen), I, Br, and Cl.

    Deuterium is chemically nearly identical to hydrogen but is a different isotope — and crucially, for chirality, isotopes count as different substituents because they differ in mass and nuclear composition. So D, I, Br, Cl are four different groups.

    → This carbon is asymmetric.

  3. Option (c): The carbon is bonded to H, OH, C₂H₅ (ethyl), and CH₃ (methyl).

    These are four distinct groups: a hydrogen, a hydroxyl, a two-carbon chain, and a one-carbon chain. No two are the same.

    → This carbon is asymmetric. …

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