MCQ
If $1\, mole$ of aqueous nitric acid is formed, calculate total heat released

$\left. \begin{gathered}
  {\text{4N}}{{\text{H}}_{3(g)}}{\text{ + 5}}{{\text{O}}_{2(g)}} \to {\text{ 4N}}{{\text{O}}_{(g)}}{\text{ +  6}}{{\text{H}}_{\text{2}}}{{\text{O}}_{{\text{(l)}}}} \hfill \\
  {\text{2N}}{{\text{O}}_{(g)}}{\text{ + }}{{\text{O}}_{2(g)}} \to {\text{2N}}{{\text{O}}_{2(g)}} \hfill \\
  {\text{3N}}{{\text{O}}_{2(g)}}{\text{ +  }}{{\text{H}}_{{\text{ 2}}}}{{\text{O}}_{(l)}} \to {\text{2H N}}{{\text{O}}_{3(aq)}}{\text{ +  N}}{{\text{O}}_{(g)}} \hfill \\ 
\end{gathered}  \right|\begin{array}{*{20}{c}}
  {\Delta H(kJ)} \\ 
  { - 904} \\ 
  { - 112} \\ 
  { - 140} 
\end{array}$

  • A
    $986$
  • B
    $246.5$
  • $493$
  • D
    None of these

Answer

Correct option: C.
$493$
c
$1\,mole{\mkern 1mu} \,{\text{HN}}{{\text{O}}_3} \to \frac{3}{2}{\mkern 1mu} \,mole{\mkern 1mu} \,{\text{N}}{{\text{O}}_2} \to \frac{3}{2}{\mkern 1mu} \,mole{\mkern 1mu} \,{\text{NO}}$ $ \to \frac{3}{2}{\text{ mole N}}{{\text{H}}_3}$

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