${C_p}$ 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}}$
$\Delta C _{ P }= C _{ P \left( H _2 O \right)}-\left[ C _{ P \left( H _2\right)}+\frac{1}{2} C _{ P \left( O _2\right)}\right]$
$=33.58-\left[28.84+\frac{1}{2}(29.37) \mid\right.$
$=33.58-[28.84+14.68] \quad \Delta C _{ P }=\frac{\Delta H _2-\Delta H _1}{ T _2- T _1}$
$=33.58-43.52\quad\quad \therefore-0.01=\frac{\Delta H _2-(-241.82)}{373-298}$
$=-9.94\,J\,mol\quad \quad \therefore-0.01 \times 75=\Delta H _2-241.82$
$=-0.00994\,kJ\,mol ^{-1}\quad\quad\therefore \Delta 11_2=-0.75-241.82$
$\approx-0.01\,kJ\,mol \quad\quad\quad=-242.6\,kJ$
[અચળ કદે મોલર ઉષ્માક્ષમતા $\bar{c}_{\mathrm{v}}$ છે]
$298 \,K \,NH_3$$_{(g)}$ અને $H_2O_{(l)}$ ની નિર્માણ ઉષ્મા અનુક્રમે $-46.0$ અને $-286.0\, kJ \,mol^{-}$ છે.
$C _{2} H _{6} \rightarrow C _{2} H _{4}+ H _{2}$
પ્રકિયા એન્થાલ્પી $\Delta_{ r } H =...........{ kJ\, mol ^{-1}}$.
[આપેલ : બંધ એન્થાલ્પી $kJ$ $mol$ $^{-1}:C-C : 347, C = C : 611 ; C - H : 414, H - H : 436]$