MCQ
process ${N_{2\left( g \right)}} + 3{H_{2\left( g \right)}} \rightleftharpoons 2N{H_3}_{\left( g \right)} + heat$
- A$K_p = K_c$
- B$K_p = K_c\, (RT)^{-1}$
- ✓$K_p = K_c\, (RT)^{-2}$
- D$K_p = K_c\, (RT)$
$K_P=K_C(R T)^{-2}$
For the reaction, $\Delta n=2-(1+3)=-2$, hence the correct relation would be $K_p=K_C(R T)^{-2}$
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$(i)\,\,$on doubling the initial concentration of $A$ only, the rate of reaction is also doubled and
$(ii)$ on doubling the initial concentration of both $A$ and $B,$ there is a change by a factor of $8$ in the rate of the reaction.
The rate of this reaction is given by
${\Delta _r}{G^o}$ (in $kJ\,mol^{-1}$) $=120-\frac {3}{8}\,T$
The major component of the reaction mixture at $T$ is
