275861
Given $\mathrm{E}_{\mathrm{Cr}^{3+} / \mathrm{Cr}}^{0}=-0.72 \mathrm{~V}, \mathrm{E}_{\mathrm{Fe}^{2+} / \mathrm{Fe}}^{0}=-0.42 \mathrm{~V}$.
The potential for the cell
$\mathrm{Cr}_{2}\left \vert\mathrm{Cr}^{3+}(0.1 \mathrm{M}) \ \vert \mathrm{Fe}^{2+}(0.01 \mathrm{M})\right \vert \mathrm{Fe}$ is
275863
At temperature of $298 \mathrm{~K}$, the emf of the following electrochemical cell, $\operatorname{Ag}(\mathrm{s})\left \vert\operatorname{Ag}^{+}(0.1 \mathrm{M}) \ \vert \mathrm{Zn}^{2+}\right \vert \mathrm{Zn}(\mathrm{s})(0.1 \mathrm{M})$
Will be (Given, $\mathrm{E}_{\text {cell }}^{0}=-1.562 \mathrm{~V}$ )
275861
Given $\mathrm{E}_{\mathrm{Cr}^{3+} / \mathrm{Cr}}^{0}=-0.72 \mathrm{~V}, \mathrm{E}_{\mathrm{Fe}^{2+} / \mathrm{Fe}}^{0}=-0.42 \mathrm{~V}$.
The potential for the cell
$\mathrm{Cr}_{2}\left \vert\mathrm{Cr}^{3+}(0.1 \mathrm{M}) \ \vert \mathrm{Fe}^{2+}(0.01 \mathrm{M})\right \vert \mathrm{Fe}$ is
275863
At temperature of $298 \mathrm{~K}$, the emf of the following electrochemical cell, $\operatorname{Ag}(\mathrm{s})\left \vert\operatorname{Ag}^{+}(0.1 \mathrm{M}) \ \vert \mathrm{Zn}^{2+}\right \vert \mathrm{Zn}(\mathrm{s})(0.1 \mathrm{M})$
Will be (Given, $\mathrm{E}_{\text {cell }}^{0}=-1.562 \mathrm{~V}$ )
275861
Given $\mathrm{E}_{\mathrm{Cr}^{3+} / \mathrm{Cr}}^{0}=-0.72 \mathrm{~V}, \mathrm{E}_{\mathrm{Fe}^{2+} / \mathrm{Fe}}^{0}=-0.42 \mathrm{~V}$.
The potential for the cell
$\mathrm{Cr}_{2}\left \vert\mathrm{Cr}^{3+}(0.1 \mathrm{M}) \ \vert \mathrm{Fe}^{2+}(0.01 \mathrm{M})\right \vert \mathrm{Fe}$ is
275863
At temperature of $298 \mathrm{~K}$, the emf of the following electrochemical cell, $\operatorname{Ag}(\mathrm{s})\left \vert\operatorname{Ag}^{+}(0.1 \mathrm{M}) \ \vert \mathrm{Zn}^{2+}\right \vert \mathrm{Zn}(\mathrm{s})(0.1 \mathrm{M})$
Will be (Given, $\mathrm{E}_{\text {cell }}^{0}=-1.562 \mathrm{~V}$ )
275861
Given $\mathrm{E}_{\mathrm{Cr}^{3+} / \mathrm{Cr}}^{0}=-0.72 \mathrm{~V}, \mathrm{E}_{\mathrm{Fe}^{2+} / \mathrm{Fe}}^{0}=-0.42 \mathrm{~V}$.
The potential for the cell
$\mathrm{Cr}_{2}\left \vert\mathrm{Cr}^{3+}(0.1 \mathrm{M}) \ \vert \mathrm{Fe}^{2+}(0.01 \mathrm{M})\right \vert \mathrm{Fe}$ is
275863
At temperature of $298 \mathrm{~K}$, the emf of the following electrochemical cell, $\operatorname{Ag}(\mathrm{s})\left \vert\operatorname{Ag}^{+}(0.1 \mathrm{M}) \ \vert \mathrm{Zn}^{2+}\right \vert \mathrm{Zn}(\mathrm{s})(0.1 \mathrm{M})$
Will be (Given, $\mathrm{E}_{\text {cell }}^{0}=-1.562 \mathrm{~V}$ )