Consider the following reversible chemical reaction,
\[
\begin{array}{l}
\mathrm{A}_{2}(\mathrm{....
Consider the following reversible chemical reaction,
\[
\begin{array}{l}
\mathrm{A}_{2}(\mathrm{~g})+\mathrm{B}_{2}(\mathrm{~g}) \stackrel{\mathrm{K}_{1}}{\rightleftharpoons} 2 \mathrm{AB}(\mathrm{g}) \\
6 \mathrm{AB}(\mathrm{g}) \stackrel{\mathrm{K}_{2}}{\rightleftharpoons} 3 \mathrm{~A}_{2}(\mathrm{~g})+3 \mathrm{~B}_{2}(\mathrm{~g})
\end{array}
\]
\( \mathrm{P} \)
The relation between \( K_{1} \) and \( K_{2} \) is
(1) \( \mathrm{K}_{2}=\mathrm{K}_{1}^{3} \)
(2) \( \mathrm{K}_{1} \mathrm{~K}_{2}=3 \)
(3) \( \mathrm{K}_{2}=\mathrm{K}_{1}^{-3} \)
(4) \( \mathrm{K}_{1} \mathrm{~K}_{2}=\frac{1}{3} \)
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