MCQ
${E^0} = \frac{{RT}}{{nF}}$ In ${K_{eq}}$. This is called
- AGibb's equation
- BGibb's-Helmholtz equation
- ✓Nernst's equation
- DVander Waal's equation
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$A \to B$ ${k_1} = {10^{15}}{e^{ - 25000/8.34\,T}}$
$C \to D$ ${k_2} = {10^{14}}{e^{ - 15000/8.34\,T}}$
Calculate the approximate temperature at which $k_1 = k_2$ ...... $K$

$CH_3CH_2OH$ $\xrightarrow{{P + {I_2}}}A\xrightarrow[{{\text{dry ether}}}]{{Mg}}B\xrightarrow{{HCHO}}C\xrightarrow{{{H_2}O}}D$ the compound $D$ is