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KCET · Chemistry · Electrochemistry

The standard emf of a galvanic cell involving 2 moles of electrons in its redox reaction is \(0.59 \mathrm{~V}\). The equilibrium constant for the redox reaction of the cell is

  1. A \(10^{20}\)
  2. B \(10^{5}\)
  3. C 10
  4. D \(10^{10}\)
Verified Solution

Answer & Solution

Correct Answer

(A) \(10^{20}\)

Step-by-step Solution

Detailed explanation

In a galvanic cell, \(\Delta G^{\circ}=-n F E^{\circ}\)
Relationship between \(\Delta G^{\circ}\) and equilibrium constant
\[
\Delta G^{\circ}=-2.303 R T \log K_{p}
\]
From Eqs. (i) and (ii), we get
\[
\begin{gathered}
-2.303 R T \log K_{p}=-n F E^{\circ} \\
\log K_{p}=\frac{n F E^{\circ}}{2.303 R T}=\frac{n E^{\circ}}{\frac{2.303 R T}{F}} \\
=\frac{2 \times 0.59}{0.059}=20 \\
K_{p}=\mathrm{AL}(20) \quad(\mathrm{AL}=\text { Antilog }) \\
K_{p}=10^{20}
\end{gathered}
\]