Home
Class 12
CHEMISTRY
A sample of water from a large swimming ...

A sample of water from a large swimming pool has a resistance of `9200 Omega` at `25^(@)C` when placed in a certain conductance cell. When filled with `0.02M KCI` solution the cell has a resistance of `85 Omega` at `25^(@)C. 500g` of `NaCI` were dissolved in the pool, which was throughly stirred. A sample of this solution gave a resistance of `7600 Omega`. calculate the volume of water in the pool. Given: Molar conductance of `NaCI` at that concentration is `126.5 Omega^(-1) cm^(2) mol^(-1)` and molar conductivity of `KCI` at `0.02M` is `138 Omega^(-1) cm^(2) mol^(-1)`.

Text Solution

Verified by Experts

The correct Answer is:
`2 xx 10^(5) dm^(3)`

For `KCI`
`lambda_(M) = (k xx 1000)/(M) rArr 138 (k xx 1000)/(0.02)`
`k = 2.76 xx 10^(-3) = (1)/(R) ((l)/(a)) = (1)/(85) ((l)/(a))`
`(l//a) = 0.2346`
For `H_(2)O: k_(H_(2)O) = (1)/(9200) (l//a)`
For NaCI: `k_(NaCI) = (1)/(7600) (l//a)`
`lambda_(M) = ((k_(NaCI-k_(H_(2)O)))xx1000)/(M)`
`126.5=(((1)/(7600)-(1)/(9200))xx0.2346xx1000)/(M)`
` = 4.2438 xx 10^(-5)`
`M = (500)/(58.5xxV) =4.2438 xx 10^(-5)`
`V = 201400 L`
`V = 2.014 xx 10^(-5)L`
Promotional Banner

Similar Questions

Explore conceptually related problems

A sample of water from a large swimming pool has a resistance of 10000Omega at 25^(@)C when placed in a certain conductace cell. When filled with 0.02M KCI solution, the cell has a resistance of 100 Omega at 25^(@)C, 585 gm of NaCI were dissolved in the pool, which was throughly stirred. A sample of this solution gave a resistance of 8000 Omega . Given: Molar conductance of NaCI at that concentration is 125 Omega^(-1) cm^(2) mol^(-1) and molar conductivity of KCI at 0.02 M is 200W^(-1) cm^(2) mol^(-1) . Conductivity (Scm^(-1)) of H_(2)O is:

A sample of water from a large swimming pool has a resistance of 10000Omega at 25^(@)C when placed in a certain conductace cell. When filled with 0.02M KCI solution, the cell has a resistance of 100 Omega at 25^(@)C, 585 gm of NaCI were dissolved in the pool, which was throughly stirred. A sample of this solution gave a resistance of 8000 Omega . Given: Molar conductance of NaCI at that concentration is 125 Omega^(-1) cm^(2) mol^(-1) and molar conductivity of KCI at 0.02 M is 200W^(-1) cm^(2) mol^(-1) . Cell constant (in cm^(-1)) of conductane cell is:

A sample of water from a large swimming pool has a resistance of 10000Omega at 25^(@)C when placed in a certain conductance cell. When filled with 0.02M KCl solution, the cell has a resistance of 100 Omega at 25^(@)C, 585 gm of NaCl were dissolved in the pool, which was thoroughly stirred. A sample of this solution gave a resistance of 8000 Omega . Given: Molar conductance of NaCl at that concentration is 125 Omega^(-1) cm^(2) mol^(-1) and molar conductivity of KCl at 0.02 M is 200Omega^(-1) cm^(2) mol^(-1) . Volume (in Litres) of water in the pool is:

A silver wire has a resistance of 2.1 Omega at 27.5^(@) C and a resistance of 2.8 Omega at 100^(@) C . Determine the temperature coefficient of resistivity of silver.

A silver wire has a resistance of 2.1 Omega at 27.5 ^(@)C. and a rsistance of 2.7 Omega at 100 ^(@)C. Determine the temperature coefficient of resistivity of silver.

A wire has resistance of 24 Omega is bent in the following shape. The effective resistance between A and B is

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 .

The internal resistance of a cell of emf 4 V is 0.1 Omega . It is connected to a resistance of 3.9 Omega . The voltage across the cell will be

The resistance of wire is 10 Omega IF the length of wire is increase by n% the new resistance is 10.2 Omega then n…..