The conductivity of a strong electrolyte:

  • A
    Increases on dilution
  • B
    Decreases on dilution
  • C
    Does not change with dilution
  • D
    None of these

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Similar Questions

The increase in equivalent conductance of an electrolyte solution with dilution is primarily due to the increase in:

At $25^o C$,the molar conductivities at infinite dilution of $NaOAc$ and $HCl$ in water are $91.0 \, S \, cm^2/mol$ and $426.2 \, S \, cm^2/mol$,respectively. What is the value to be added to calculate the molar conductivity of $HOAc$ at infinite dilution?

Which is the conductivity of $0.02 \ M \ HCl$ solution if molar conductivity of the solution at $25^{\circ} C$ is $412.3 \ \Omega^{-1} \ cm^{2} \ mol^{-1}$?

What is the conductivity of $0.02 \ M$ $AgNO_3$ solution having cell constant $1.1 \ cm^{-1}$ and resistance $94.5 \ \Omega$?

If $x$ is the specific conductance (in $S \ cm^{-1}$) of an electrolyte solution and $y$ is the molarity of the solution,then $\Lambda_m$ (in $S \ cm^2 \ mol^{-1}$) is given by:

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