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The specific conductance of a 0.20 mol L...

The specific conductance of a 0.20 mol `L^-1` solution of KCI at 300 K is 0.026 s `cm^-1`. Calculate molar conductivity of the solution.

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The specific conductance of a "0.20 mol.L"^(-1) solution of KCl at 300 K is "0.026S.cm"^(-1) . Calculate molar conductivity of the solution.

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In a conductivity cell, the distance between the two Pt electrodes is 2.0 cm and each electrode has cross - sectional area of 4.0cm^(2) . When the cell is filled with a 0.4 molar solution of an electrolyte, the reistance of the cell 25Omega . Calculate the molar conductivity of the solution.

At 25^(@)C resistance of 0.01 (N) KCl and 0.01 (N) HCl solutions in the same conductivity cell are 150 ohm and 51.40 ohm, respectively. The specific conductance of the KCl solution at 25^(@)C is 1.41xx10^(-3)" ohm"^(-1).cm"^(-1) . Determine the molar conductivity of HCl solution 25^(@)C .

The specific conductance of 0.01 (N) KCl solution at 25^(@)C, is "0.00140 ohm"^(-1)."cm"^(-1) . The same conductivity cell when filled with ((N)/(100))NaOH solution, the resistance of the solution was 14.8 ohm. If the resistance of the KCl solution is 25 ohm, what will be the equivalent conductivity of NaOH at 25^(@)C ?

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