$F{e^{ + 2 }} + 2{e^ - }\, \to \,Fe\,;\,\,\,\,{E^o} = - 0.440\,V$
$F{e^{ + 3 }} + 3{e^ - }\, \to \,Fe\,;\,\,\,\,{E^o} = - 0.036\,V$
તો $F{e^{ + 3 }} + {e^ - } \to \,F{e^{ + 2 }}$ માટે પ્રમાણિત ઇલેક્ટ્રોન પોટેન્શિયલ $({E^o})$ .............. $\mathrm{V}$ છે.
\(F{e^{2 + }} + 2{e^ - } \to Fe\) …..\((i)\)
\(\Delta {G^o} = - 2 \times F \times ( - 0.440\,V) = 0.880\,F\)
\(F{e^{3 + }} + 3{e^ - } \to Fe\) …..\((ii)\)
\(\Delta {G^o} = - 3 \times F \times ( - 0.036) = 0.108\,F\)
On subtracting equation \((i) \) from \((ii)\)
\(F{e^{3 + }} + {e^ - } \to F{e^{2 + }}\)
\(\Delta {G^o} = 0.108\,F - 0.880\,F = - 0.772\,F\)
\({E^o}\) for the reaction \( = - \frac{{\Delta {G^o}}}{{nF}}\) \( = - \frac{{( - \,0.772\,F)}}{{1 \times F}} = + \,0.772\,V\).
$Zn\,(s)\,\, + \,\,C{u^{2 + }}\,(aq)\, \rightleftharpoons \,Z{n^{2 + \,}}\,(aq)\, + Cu\,(s)$
$(R = 8 \,JK^{-1}\,mol^{-1},\, F = 96000\,C\,mol^{-1})$