(ઉપયોગ $R =8.31\, J\, K ^{-1}\, mol ^{-1} ; \log 2=0.3010$. In $10=$ $2.3, \log 3=0.477$ )
\(t _{ i } \,\quad\quad 1\)
\(\text { teq } \quad 1-0.4 \quad\quad \frac{0.4}{2} \quad\quad\quad \frac{0.4}{2}\)
\(K _{ p }= \frac{(0.2)^{\frac{1}{2}}(0.2)^{\frac{1}{2}}}{1-0.4}=\frac{0.2}{0.6}=\frac{1}{3}\)
\(\Delta G =\Delta G ^{\circ}+ RT \ln K =0\)
\(\Delta G ^{\circ} =- RT \ln K \Rightarrow-8.31 \times 300 \times 2.3 \times \log \left(\frac{1}{3}\right)\)
\(=2735\, J / mol\)
${A_2}(g)\, + \,{B_2}(g)\,\overset {{K_1}} \leftrightarrows \,2AB(g)\,\,\,......(1)$
$6AB\,(g)\,\,\overset {{K_2}} \leftrightarrows \,\,3{A_2}(g)\, + \,3{B_2}(g)......(2)$
તો $K_1$ અને $K_2$ વચ્ચેનો સંબંધ શું થાય?
$2NH_3 + 5/2O_2 $ $\rightleftharpoons$ $ 2NO + 3H_2O, K_1, K_2$ અને $K_3$ ના સંદર્ભમાં ...... થાય.