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The molar conductivity of a 0.5mol/dm^3 ...

The molar conductivity of a `0.5mol``/dm^3` solution of `AgNO_3` with electrolytic conductivity of `5.76 ` x `10^-3` `Scm^-1` at 298K is:

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The molar conductivity of a "0.5 mol.dm"^(3) solution of AgNO_(3) with electrolytic conductivity of 5.76xx10^(-3)"S.cm"^(-1)" at 298 K in S.cm"^(2)."mol"^(-1) is -

(b) At a constant temperature, the molar conductivity at infinite dilution of weak electrolyte is "x ohm"^(-1).cm^(2).mol^(-1) . If at the same temperature, the molar conductivity of the same electrolytic solution of a definite concentration is "0.02 x ohm"^(-1)."cm"^(2)."mol"^(-1) , what is the degree of dissociation of the electrolyte in the solution?

Molar conductivity of 0.1 (M) solution of a weak electrolyte is "0.009 ohm"^(-1)."cm"^(-1). Its molar conductivity at infinite dilution is "260 ohm"^(-1)."cm"^(2)."mol"^(-1) . What is the degree of dissociation of the electrolyte in the solution?

The resistance of a conductivity cell containing 0.001M KCl solution at 298 K is 1500 Omega . What is the cell constant if conductivity of 0.001 M KCl solution at 298 K is 0.146xx10^(-3)S.cm^(-1) .

At a given temperature, the molar conductivity at infinite dilution of the electrolyte A_(2)B and the molar ionic conductance of B^(2-) are x and y" ohm"^(-1)."cm"^(2)."mol"^(-1) respectively. Find the molar ionic conductance of A^(+) ion.

Why is the molar conductivity of a 0.01 M HCl solution greater than that of a 0.01 M CH_(3)COOH solution?

Resistance of 0.2 M solution of an electrolyte is 50Omega . The specific conductance of the solutions is "1.4 S.m"^(-1) . The resistance of 0.5 M solution of the same electrolyte is 280Omega . The molar conductivity of 0.5 M solution of the electrolyte is "S.m"^(2)."mol"^(-1) -

Arrange the following solution in order of decreasing specific conductance : (i) 0.01 M NaCl (ii) 0.05M NaCl (iii) 0.1 M NaCl (iv) 0.5M NaCl Resistance of a conductivity cell filled with 0.1 M KCl solution is 80 ohm. The conductivity cell has a cell constant of 1.0 cm^(-1) . Find out the molar conductance of the KCl solution.

The conductivity of 0.20 M solution of KCl at 298 K is 0.0248 S.cm^(-1) . Calculate the molar conductivity of the KCl solution.

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