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(a) Define the following terms : (i) L...

(a) Define the following terms :
(i) Limiting molar conductivity,
(ii) Fuel cell
(b) Resistance of a conductivity cell filled with `0.1 molL^(-1)KCl` solution is 100 Ohm. If the resistance of the same cell when filled with `0.2 mol L^(-1)KCl` solution is 520 Ohm , calculate the conductivity and molar conductivity of `0.2 mol L^(-1) KCl` solution. The conductivity of `0.1 mol L^(-1) KCl` solution is ` 1.29xx10^(-1) Scm^(-1)` .

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Resistance of a conductivity cell filled with 0.1 mol L^(-1) KCl solution is 100Omega . If the resistacne of the same cell when filled with 0.02 mol L^(-1) KCl solution is 520 Omega , calculate the conductivity and molar conductivity of 0.02 mol L^(-1) KCl solution . The conductivity of 0.1 mol L^(-1) KCl solution is 1.29 S/m.

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(a) Define the following terms: (i) Limiting molar conductivity (ii) Fuel cell. (b) Resistance of a conductivity cell filled with 0.1 mol L^-1 KCl solution is 100 Omega . IF the resistance of the same cell when filled with 0.02 mol L^-1 KCl solution is 520 Omega , calculate the conductivity and molar conductivity of 0.02 mol L^-1 KCl solution. The conductivity of 0.1 mol L^-1 KCl solution is 1.29 times 10^-2 Omega^-1 cm^-1 .

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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) ).