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Q.In which of the following groups are both ions coloured in aqueous solution ? I. Cu+Cu^{+} II. Ti4+Ti^{4+} III. Co2+Co^{2+} IV. Fe2+Fe^{2+} [Atomic number : Cu = 29, Ti = 22, Co = 27, Fe = 26] (A) I and II (B) II and III (C) III and IV (D) I and IV

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The colour of a transition metal ion in aqueous solution depends on the presence of unpaired d-electrons, which allow d-d transitions. Both Co2+Co^{2+} and Fe2+Fe^{2+} have unpaired d-electrons and are coloured, while Cu+Cu^{+} and Ti4+Ti^{4+} have fully filled or empty d-subshells and are colourless. The correct pair is III and IV, i.e., option (C).

The question asks which two ions among the given four are coloured in aqueous solution. Colour in transition metal ions arises from the absorption of visible light due to electronic transitions between split d-orbitals — the famous d-d transition. But this only happens if the d-subshell is partially filled (i.e., has at least one unpaired electron and at least one vacant orbital). If the d-subshell is completely empty (d0d^0) or completely filled (d10d^{10}), no d-d transition is possible, and the ion is colourless (or white) in solution.

Let’s examine each ion one by one.

  1. Cu+Cu^{+} (Copper(I))

    Atomic number of Cu = 29. Neutral Cu has configuration [Ar] 3d104s1[Ar]\,3d^{10}4s^1.

    Cu+Cu^{+} loses the 4s electron, so its configuration becomes [Ar] 3d10[Ar]\,3d^{10}.

    The d-subshell is completely filled. No d-d transitions possible.

    Result: Colourless in aqueous solution.

  2. Ti4+Ti^{4+} (Titanium(IV))

    Atomic number of Ti = 22. Neutral Ti has [Ar] 3d24s2[Ar]\,3d^{2}4s^2.

    Ti4+Ti^{4+} loses all four valence electrons (two from 4s and two from 3d), so its configuration becomes [Ar] 3d0[Ar]\,3d^{0}.

    The d-subshell is completely empty. No d-d transitions possible.

    Result: Colourless in aqueous solution.

  3. Co2+Co^{2+} (Cobalt(II))

    Atomic number of Co = 27. Neutral Co has [Ar] 3d74s2[Ar]\,3d^{7}4s^2.

    Co2+Co^{2+} loses the two 4s electrons, giving [Ar] 3d7[Ar]\,3d^{7}.

    The d-subshell is partially filled (7 electrons in 5 orbitals — there are unpaired electrons). In aqueous solution, Co2+Co^{2+} forms the pink [Co(H2O)6]2+[Co(H_2O)_6]^{2+} complex.

    Result: Coloured (pink) in aqueous solution. …

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