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The specific conductance of a saturated ...

The specific conductance of a saturated solution of silver bromide is `kScm^(-1)` . The limiting ionic conductivity of `Ag^+` and `Br^-` ions are x and y respectively. The solubility of silver4 vromide in `gL^(-1)` is : (molar mass of AgBr=188)

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The specific conductance of a saturated solution of silver bromide is kScm^(-1) . The limiting ionic conductivity of Ag^+ and Br^- ions are x and y respectively. The solubility of silver bromide in gL^(-1) is : (molar mass of AgBr=188)

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The specific conductance of saturated solution os silver chloride is k(ohm^(-1)cm^(-1)) . The limiting ionic conductance of Ag^(+) and Cl^(-) ions are x and y respectively. The solubility of AgCl in "gram liter"^(-1) is : (Molar mass of AgCl=143.5"g mol"^(-1) )

The specific conductance of 0.036 M KBr solution is 5.40 xx 10^(-4) S cm^(-1) . Find the molar conductivity of the solution.

The conductivity of a saturated solution of AgBr at 25^@C is 8.5xx10^-7 S cm^-1 . If the limiting molar ionic conductance of Ag^+ and Br^- ions are 62 and 78 S cm^2 mol^-1 , then calculate the solubility product of AgBr.

The specific conductance (or conductivity ) of 0.014 M NaBr solution is 3.16 xx 10^(-4) S cm^(-1) .Find the molar conductivity of the solution .

The specific conductance of a saturated solution of AgCl at 25^@C is 1.821xx10^(-5) mho cm^(-1) . What is the solubility of AgCl in water (in g L^(-1) ) , if limiting molar conductivity of AgCl is 130.26 mho cm^(2) mol^(-1) ?