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Write Brief Answer · Q8

Q.Complete the following:

a) MnO₄⁻ + H⁺ + Fe²⁺ → ?
b) C₆H₅CH₃ + acidified KMnO₄ → ?
c) MnO₄²⁻ + Red hot → ?
d) KMnO₄ →(Δ) ?
e) Cr₂O₇²⁻ + I⁻ + H⁺ → ?
f) Na₂Cr₂O₇ + KCl → ?
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Step 1 (part a). MnO₄⁻ + Fe²⁺ + H⁺ → Mn²⁺ + Fe³⁺ + H₂O. Balancing: MnO₄⁻ accepts 5 electrons (→Mn²⁺), Fe²⁺ donates 1 electron each, so the balanced equation is MnO₄⁻ + 5Fe²⁺ + 8H⁺ → Mn²⁺ + 5Fe³⁺ + 4H₂O -- acidified permanganate oxidises ferrous to ferric ion.

Step 2 (part b). C₆H₅CH₃ (toluene) with acidified KMnO₄, on heating/refluxing, oxidises the methyl side chain all the way to a carboxylic acid group, giving C₆H₅COOH (benzoic acid) -- a standard organic-oxidation application of acidic KMnO₄'s strong oxidising power, regardless of the length of an unbranched alkyl side chain on the benzene ring.

Step 3 (part c). MnO₄²⁻ (manganate ion) is thermally unstable and disproportionates on strong ('red hot') heating: 3MnO₄²⁻ + 2H₂O → MnO₂ + 2MnO₄⁻ + 4OH⁻ (in aqueous/neutral conditions) -- manganese simultaneously going from +6 to both +4 (MnO₂) and +7 (MnO₄⁻).

Step 4 (part d). Solid KMnO₄ on heating (Δ) decomposes: 2KMnO₄ →(Δ) K₂MnO₄ + MnO₂ + O₂ -- the standard laboratory method for generating oxygen gas. …

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