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The specific conductivity of an N//20 so...

The specific conductivity of an `N//20` solution of KCI at `25^@ C is 0.002765 mhos. If the resistance of the same solution placed in the cell is 2000 ohm, what is the cell constant ?

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Describe specific and equivalent conductance. How are they related? What is the effect of dilution of them? The specific conductivity of an N//20 solution of KCl at 25^(@) C is 0.002765 mho cm^(-1) . If the resistance of the same solution placed in the cell is 2000 ohms, what is the cell constant?

If specific conductivity of N// 50 KCl solution at 298 K is 0.002765 Omega^(-1) cm^(-1) and resistance of a cell contaning this solution is 100 Omega , calculate the cell constant.

The specific conductivity of 0.1 N kCl solution is 0.0129 ohm^(-1) cm^(-1) . The resistance of the solution in the cell is 100ohm . The cell constant of the cell is

Resistance of a conductivity cell filled with 0.1 M KCl solution is 100 ohms. If the resistance of the same cell when filled with 0.02 M KCl solution is 520 ohms, calculate the conductivity and molar conductivity of 0.02 M KCl solution. (The conductivity of 0.1 M KCl solution is 1.29 Sm^(-1) ).

The specific conductance of a solution is 0.356 ohm^-1 cm^-1 . The conductance of this solution in a cell was 0.0268 ohm^-1 . Calculate the cell constant.

The specific conductance of solution of 0.12 N is 0.024 mho^(-1) cm^(-1) . Determine its equivalent conductance.

Resistance of 0.2 M solution of an electrolyte is 50 Omega . The specific conductance of the solution is 1.3 S m^(-1) . If resistance of the 0.4 M solution of the same electrolyte is 260 Omega , its molar conductivity is

Express the relation among the conductivity of a solution in the cell, the cell constant and resistance of solution in the cell.

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