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The molar conductance of KCl solution at...

The molar conductance of KCl solution at different concentration at 298K are given below:

Show that a plot of `Lambda_m` and `C_(1/2)` is a straight line. Determine the values of `Lambda_m` and A for KCl.

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The molar conductance of KCl solution at different concentrations at 298 K are given below: Plot a graph between wedge_(m) and c^(1//2) and determine the value of wedge_(m)^(@) from it.

The molar conductance of HCl solution at different concentration at 298 K are given below : Plot a graph between wedge_(m) and c^(1//2) and determine the value of wedge_(m)^(@) from it.

The molar conductance of NaCl solution at different concentration at 298K are given below : {:(C(mol L^(-1)),wedge_(m)(S cm^(2)mol^(-1))),(0.001,123.7),(0.010,118.5),(0.020,115.75),(0.050,111.06):} Plot a graph between wedge_(m) and C^(1//2) and determine the value of wedge^(@)m from it.

The resistance of a conductivity cell with 0.1 M KCl solution is found to be 200 ohm at 298K. When the same cell was filled with 0.02 M NaCl solution, the resistance at the same temperature is found to be 1100 ohm . Calculate: the molar conductivity of 0.02 M NaCl solution in S m^2 mol^-1 . Given: Conductivity of 0.1 M KCl solution at 298K = 1.29 S m^-1 .

The conductivity of 0.35M NaCl solution at 298K is 0.025 S/cm. Calculate its molar conductivity .

The resistance of a conductivity cell with 0.1 M KCl solution is found to be 200 ohm at 298K. When the same cell was filled with 0.02 M NaCl solution, the resistance at the same temperature is found to be 1100 ohm . Calculate: the cell constant of the cell in m^-1 . Given conductivity of 0.lM KCl is 1.29 Sm^(-1) ]

The molar conductivity of 1.5 M solution of an electrolysis is found to be 138.9 S cm^2 mol^-1 . Calculate the conductivity of this solution?

MODERN PUBLICATION-ELECTROCHEMISTRY-EXERCISE
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