\(K _1= Ae ^{-\frac{\left( E _{ a }\right)_1}{ RT }}\)
\(K _2= Ae ^{-\frac{\left( E _{ a }\right)_2}{ RT }}\)
\(\frac{ K _2}{ K _1}= e ^{\frac{\left( E _{ a }\right)_1-\left( E _{ a }\right)_2}{ RT }}\)
\(\log \frac{ K _2}{ K _1}=\frac{\left( E _{ a }\right)_1-\left( E _{ a }\right)_2}{2.3 RT }\)
\(=\frac{(41.4-30) \times 1000}{2.3 \times 8.3 \times 300}=1.99\)
\(\approx 2\)
$2MnO_4^ - + 10{I^ - } + 16{H^ + } \to 2M{n^{2 + }} + 5{I_2} + 8{H_2}O$ તો $I_2$ ના ઉત્પન્ન થવાનો દર......$\times {10^{ - 2}}\,M{s^{ - 1}}$ જણાવો