Question 1

SCQHARD

At 300 K, the molar conductivities of the aqueous solutions of three salts at two different concentrations are given below:

SaltConcentrationΒ (M)MolarΒ conductivityΒ (SΒ cm2Β molβˆ’1)NaNO30.011110.04101NaCl0.011170.04107AgNO30.011250.04116\begin{array}{|c|c|c|} \hline \text{Salt} & \text{Concentration (M)} & \text{Molar conductivity (S cm}^2 \text{ mol}^{-1}\text{)} \\ \hline NaNO_3 & 0.01 & 111 \\ & 0.04 & 101 \\ \hline NaCl & 0.01 & 117 \\ & 0.04 & 107 \\ \hline AgNO_3 & 0.01 & 125 \\ & 0.04 & 116 \\ \hline \end{array}

The conductivity of a saturated aqueous solution of AgClAgCl is 1.40Γ—10βˆ’61.40 \times 10^{-6} S cmβˆ’1^{-1} at 300 K. If the solubility of AgClAgCl in water at 300 K is XX mol Lβˆ’1^{-1}, then log⁑10(Xβˆ’1)\log_{10}(X^{-1}) is

(Assume that AgClAgCl dissolved in water ionizes completely and that the molar conductivity of saturated AgClAgCl solution is equal to its limiting molar conductivity.)

(A)

3

(B)

4

(C)

5

(D)

6

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