The electronic conductance does not depend on . . . . . . .

  • A
    concentration of the electrolyte
  • B
    the number of valence electrons per atom
  • C
    temperature
  • D
    the nature and structure of the metal

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Similar Questions

The dissociation constant of acetic acid is $1.75 \times 10^{-5}$ and $\Lambda _{CH_3COOH}^o = 370.6 \times 10^{-4} \, S \, m^2 \, mol^{-1}$. The specific conductance of $0.01 \, M$ acetic acid solution will be:

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The resistance of a conductivity cell containing $0.01 \, M \, KCl$ solution at $298 \, K$ is $1750 \, \Omega$. If the conductivity of $0.01 \, M \, KCl$ solution at $298 \, K$ is $0.152 \times 10^{-3} \, S \, cm^{-1}$,then the cell constant of the conductivity cell is $.......... \, \times 10^{-3} \, cm^{-1}$.

The molar conductivities at infinite dilution for $AgNO_3$,$AgCl$,and $NaCl$ are $116.5$,$121.6$,and $110.3 \ S \ cm^2 \ mol^{-1}$ respectively. The molar conductivity of $NaNO_3$ is...

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

Assertion : On increasing dilution,the specific conductance keeps on increasing.
Reason : On increasing dilution,the degree of ionization of a weak electrolyte increases and the mobility of ions also increases.

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