$AgCl$ when heated with $Na_2CO_3$ gives:

  • A
    $Ag_2O$
  • B
    $Ag$
  • C
    $Ag_2CO_3$
  • D
    $NaAgCO_3$

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Similar Questions

Match the reactions in Column $I$ with the nature of the reactions/type of the products in Column $II$.
Column $I$ Column $II$
$A$. $O_2^{-} \rightarrow O_2 + O_2^{2-}$ $p$. redox reaction
$B$. $CrO_4^{2-} + H^{+} \rightarrow$ $q$. one of the products has trigonal planar structure
$C$. $MnO_4^{-} + NO_2^{-} + H^{+} \rightarrow$ $r$. dimeric bridged tetrahedral metal ion
$D$. $NO_3^{-} + H_2SO_4 + Fe^{2+} \rightarrow$ $s$. disproportionation

To measure the quantity of $MnCl_2$ dissolved in an aqueous solution,it was completely converted to $KMnO_4$ using the reaction,
$MnCl_2 + K_2S_2O_8 + H_2O \longrightarrow KMnO_4 + H_2SO_4 + HCl$ (equation not balanced).
Few drops of concentrated $HCl$ were added to this solution and gently warmed. Further,oxalic acid $(225 \ mg)$ was added in portions till the colour of the permanganate ion disappeared. The quantity of $MnCl_2$ (in $mg$) present in the initial solution is . . . . . . . . . (Atomic weights in $g \ mol^{-1}: Mn = 55, Cl = 35.5$ )

Which of the following can act as both a reducing and an oxidising agent?

When mercury $(II)$ chloride is treated with excess of $SnCl_2$,the products obtained are

Assign $A$,$B$,$C$,$D$ from the given type of reaction.
$2BaCrO_4 \downarrow + 4HCl \longrightarrow 2BaCl_2 + H_2Cr_2O_7 + H_2O$

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