MCQ
When $KMn{O_4}$ reacts with acidified $FeS{O_4}$
- AOnly $FeS{O_4}$ is oxidised
- BOnly $KMn{O_4}$ is oxidised
- ✓$FeS{O_4}$ is oxidised $KMn{O_4}$ and is reduced
- DNone of these
$2KMn{O_4} + 3{H_2}S{O_4}\, \to \,{K_2}S{O_4} + 2MnS{O_4}$
$[2FeS{O_4} + {H_2}S{O_4}\, \to \,F{e_2}{(S{O_4})_3} + 2H] \times 5$
$[2H + [O]\, \to \,{H_2}O] \times 5$
$\overline {2KMn{O_4} + 8{H_2}S{O_4} + 10FeS{O_4}{\mkern 1mu} \to } $
${K_2}S{O_4} + 2MnS{O_4} + 5F{e_2}{(S{O_4})_3} + 8{H_2}O$
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[Atomic Masses - $\mathrm{Na}: 23.0\, \mathrm{u}, \mathrm{O}: 16.0\, \mathrm{u}, \mathrm{P}: 31.0 \,\mathrm{u}]$
(Round off to the Nearest Integer) [Given : $R =8.314 \,J mol ^{-1} K ^{-1}$. Assume,
hydrogen is an ideal gas] [Atomic mass off $Fe$ is $55.85\, u$ ]