MHT CET · Chemistry · Electrochemistry
Consider the following cell
\(\left.\mathrm{Zn}_{(\mathrm{s})} \mid \mathrm{Zn}_{(\mathrm{IM})}^{2+}\right)\left|\mathrm{KCl}_{(\mathrm{sat})}\right| \underset{\text { (paste) }}{\mathrm{Hg}_2 \mathrm{Cl}_2} \mid \mathrm{Hg}\)
\(\mathrm{E}^{\circ}\) cell \(=1.007 \mathrm{~V}\) and \(\mathrm{E}^{\circ}\) calomel \(=0.242 \mathrm{~V}\) What is the standard potential of Zn ?
- A - 0.765 V
- B 0.765 V
- C -1.247 V
- D 1.247 V
Answer & Solution
Correct Answer
(A) - 0.765 V
Step-by-step Solution
Detailed explanation
The standard cell potential is given by
\(\begin{aligned}
E_{\text {cell }}^o & =E_{\text {cathode }}^o-E_{\text {anode }}^o \\
E_{\text {cell }}^o & =E_{\text {Calomel }}^o-E_{Z \text { n }}^o \\
& =(0.242 \cdot \mathrm{~V})-1.007 \mathrm{~V} \\
& =-0.765 \mathrm{~V}
\end{aligned}\)
\(\begin{aligned}
E_{\text {cell }}^o & =E_{\text {cathode }}^o-E_{\text {anode }}^o \\
E_{\text {cell }}^o & =E_{\text {Calomel }}^o-E_{Z \text { n }}^o \\
& =(0.242 \cdot \mathrm{~V})-1.007 \mathrm{~V} \\
& =-0.765 \mathrm{~V}
\end{aligned}\)
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