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A solution offers the resistance of to a conductivity cell at . If the cell constant is and molar…

Chemistry20245 marksNumerical
(a)[3.0]
A $0\cdot05\text{ M } \text{NH}_4\text{OH}$ solution offers the resistance of $30\cdot8\text{ ohms}$ to a conductivity cell at $298\text{ K}$. If the cell constant is $0\cdot343\text{ cm}^{-1}$ and molar conductance of $\text{NH}_4\text{OH}$ at infinite dilution is $471\cdot4\text{ S cm}^2\text{mol}^{-1}$, calculate the following: (1) Specific conductance (2) Molar conductance (3) Degree of dissociation
(b)[2.0]
In the diagram of the electrolytic cell given below, A, B and C are connected in series having electrolytes of $\text{ZnSO}_4$, $\text{AgNO}_3$ and $\text{CuSO}_4$ respectively. A steady current of $1\cdot5\text{ A}$ was passed until $1\cdot45\text{ g}$ of $\text{Ag}$ was deposited at the cathode of cell B. (Atomic mass of $\text{Ag} = 108$, $\text{Cu} = 63\cdot5$, $\text{Zn} = 65\cdot3$) Answer the following questions. (1) How long did the current flow? (2) What weight of Cu and Zn was deposited at cathode?
Figure for part (b)

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Electrochemistry

From ISC 2024 Chemistry Paper 1, question 21(ii).