\(3/2\) મોલ \({O_2}\,\) ના ઉપયોગથી \(723\, kJ\) ઉષ્મા ઉત્પન્ન થાય છે.
\(1\) મોલ \({O_2}\,\) ના ઉપયોગથી \( = \frac{{723 \times 2}}{3} = \frac{{1446}}{3} = 482\,\,kJ\)
$(a)\,\,q + w$ $ (b)\,\,q$
$(c)\,\,w$ $ (d)\,\,H -TS$
| $H - H$ બંધઊર્જા | $:\, 431.37 \,kJ\, mol^{-1}$ |
| $C= C$ બંધઊર્જા | $:\, 606.10\, kJ \,mol^{-1}$ |
| $C - C$ બંધઊર્જા | $:\, 336.49\, kJ\, mol^{-1}$ |
| $C - H$ બંધઊર્જા | $:\, 410.50\, kJ\, mol^{-1}$ |
પ્રક્રિયા : $\begin{array}{*{20}{c}}
{H\,\,\,\,H} \\
{|\,\,\,\,\,\,\,\,|} \\
{C = C} \\
{|\,\,\,\,\,\,\,\,\,|} \\
{H\,\,\,\,H}
\end{array}\, + \,H - H\, \to \,\begin{array}{*{20}{c}}
{H\,\,\,\,H} \\
{|\,\,\,\,\,\,\,\,|} \\
{H - C - C - H} \\
{|\,\,\,\,\,\,\,\,\,|} \\
{H\,\,\,\,H}
\end{array}\,$
${C_p}$ of ${H_2}{O_{\left( g \right)}}$ $ = 33.58\,J\,{K^{ - 1}}\,mo{l^{ - 1}}$
${C_p}$ of ${H_{2\left( g \right)}}$ $ = 28.84\,J\,{K^{ - 1}}\,mo{l^{ - 1}}$
${C_p}$ of ${O_{2\left( g \right)}}$ $ = 29.37\,J\,{K^{ - 1}}\,mo{l^{ - 1}}$