How many moles of acidic $KMnO_4$ are required to oxidize $1$ mole of ferrous oxalate $(FeC_2O_4)$?

  • A
    $0.6$
  • B
    $0.4$
  • C
    $0.5$
  • D
    $1.5$

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In the reaction $SnCl_2(excess) + HgCl_2 \rightarrow A + SnCl_4$,'$A$' is

Which of the following reactions is a decomposition redox reaction?

$x, y$ and $z$ are respectively:
$MnO_4^- + x e^- \xrightarrow{\text{Alkaline medium}} MnO_4^{2-}$
$MnO_4^- + y e^- \xrightarrow{\text{Acidic medium}} Mn^{2+}$
$MnO_4^- + z e^- \xrightarrow{\text{Neutral medium}} MnO_2$

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Match each of the reactions given in Column $I$ with the corresponding product$(s)$ given in Column $II$.
Column $I$ Column $II$
$(A)$ $Cu + \text{dil } HNO_3$ $(p)$ $NO$
$(B)$ $Cu + \text{conc } HNO_3$ $(q)$ $NO_2$
$(C)$ $Zn + \text{dil } HNO_3$ $(r)$ $N_2O$
$(D)$ $Zn + \text{conc } HNO_3$ $(s)$ $Cu(NO_3)_2$
$(t)$ $Zn(NO_3)_2$

Chlorine oxidises sulphur dioxide in the presence of water to give an oxyacid $A$. Chlorine also oxidises iodine in the presence of water to give an oxyacid $B$. The oxidation states of $S$ and $I$ in $A$ and $B$ are respectively

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