MCQ
For ${N_2} + 3{H_2}$ $\rightleftharpoons$ $2N{H_3} + $ heat
- A${K_p} = {K_c}(RT)$
- B${K_p} = {K_c}(RT)$
- ✓${K_p} = {K_c}\,{(RT)^{ - 2}}$
- D${K_p} = {K_c}\,{(RT)^{ - 1}}$
$\Delta \operatorname{ng}=-2$
${K_p} = {K_c}\,{(RT)^{ - 2}}$
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$A \xrightarrow[ { Cu\; tube }]{\text { Redhot }}\mathrm{B} \xrightarrow[ Anhydrous AlCl_3]{\mathrm{CH}_{3} \mathrm{Cl}(1 \mathrm{eq}} \mathrm{C}$
($A$ is a lowest molecular weight alkyne)

Standard entropy change for the above reaction is .....$J\,{K^{ - 1}}\,mo{l^{ - 1}}$
$MgO(s) + C(s) \to Mg(s) + CO(g)$, for which $\Delta _r{H^o} = + 491.1\,kJ\,mo{l^{ - 1}}$ and $\Delta _r{S^o} = 198.0\,Jk^{-1}\,mo{l^{ - 1}}$ is not feasible at $298\, K$. Temperature above which reaction will be feasible is.....$K$
