\(K_C=\frac{K_P}{(R T)^{4 n_R}}=\frac{0.05}{(R \times 1000)^1}=\frac{5 \times 10^{-5}}{R}\)
$(i)\,CO(g)+ H_2O(g) \rightleftharpoons CO_2(g)+H_2(g)\,;\,K_1$
$(ii)\,CH_4(g)+H_2O(g) \rightleftharpoons CO(g)+3H_2(g)\,;\,K_2$
$(iii)\,CH_4(g) + 2H_2O(g) \rightleftharpoons CO_2(g)+ 4H_2(g)\,;\,K_3$
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$(1)$ $ A_{2(g)} + 3B_{2(g)} $ $\rightleftharpoons$ $2AB_{3(g)} $ |
$(i)$ $(RT)^{-2}$ |
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$(2)$ $ A_{2(g)} + B_{2(g)} $ $\rightleftharpoons$ $ 2AB_{(g)}$ |
$(ii)$ $ (RT)^0$ |
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$(3)$ $A_{(s)} + 1.5 B_{2(g)} $ $\rightleftharpoons$ $ AB_{3(g)}$ |
$(iii)$ $(RT)^{1/2}$ |
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$(4)$ $AB_{2(g)} $ $\rightleftharpoons$ $AB_{(g)} + 0.5B_{(g)}$ |
$(iv)$ $(RT)^{-1/2}$ |
$NO(g) \rightarrow \frac{1}{2} N_2(g)+ \frac{1}{2} O_2(g)$ સમાન તાપમાને શું થશે? :