$Fe _{2} N ( s )+\frac{3}{2} H _{2}( g ) \rightleftharpoons 2 Fe ( s )+ NH _{3}( g )$
\(\Delta n _{9}=1-\frac{3}{2}=\frac{-1}{2}\)
\(\frac{ K _{ p }}{ K _{ c }}=( RT )^{\Delta n_g}=( RT )^{-1 / 2}\)
\(K _{ c }=\frac{ K _{ p }}{( RT )^{-1 / 2}}= K _{ p ^{\prime}}( RT )^{1 / 2}\)
$X:2S{O_2} + {O_2} \rightleftharpoons 2S{O_3}$
$Y:PC{l_5} \rightleftharpoons PC{l_3} + C{l_2}$
$Z:2HI \rightleftharpoons {H_2} + {H_2}$
$HI \rightleftharpoons \frac {1}{2} H_{2(g)} + \frac{1}{2} I_{2(g)}$
તો આ પ્રક્રિયા માટે સંતુલન અચળાંકનું મૂલ્ય શું હશે?
$H_{2( g )} + I_{2(g)} \rightleftharpoons 2HI_{ ( g )}$
(અહીં : $SrCO_{3(s)} \rightleftharpoons SrO_{(s)}+ CO_{2(g)} \,, K_p=1.6\,atm$)