Given below are two statements $:$
Statement $I :$ Mohr's salt is composed of only three types of ions$-$ferrous,ammonium and sulphate.
Statement $II :$ If the molar conductance at infinite dilution of ferrous,ammonium and sulphate ions are $x_1, x_2$ and $x_3 \ S \ cm^2 \ mol^{-1}$,respectively then the molar conductance for Mohr's salt solution at infinite dilution would be given by $x_1+x_2+2 x_3$
In the light of the given statements,choose the correct answer from the options given below $:$

  • A
    Both statements $I$ and Statement $II$ are false
  • B
    Statement $I$ is false but Statement $II$ is true
  • C
    Statement $I$ is true but Statement $II$ is false
  • D
    Both statements $I$ and Statement $II$ are true

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Similar Questions

Given that $\Lambda_{m}^{\infty} = 133.4 \, S \, cm^{2} \, mol^{-1} (AgNO_{3})$; $\Lambda_{m}^{\infty} = 149.9 \, S \, cm^{2} \, mol^{-1} (KCl)$ and $\Lambda_{m}^{\infty} = 144.9 \, S \, cm^{2} \, mol^{-1} (KNO_{3})$,the molar conductivity at infinite dilution for $AgCl$ is $....... \, S \, cm^{2} \, mol^{-1}$.

What is the common unit of conductivity if the dimensions are expressed in centimeter?

Resistance of a cell containing $0.02 \ M \ KCl$ solution is $164 \ \Omega$. If the cell is filled with $0.05 \ M \ AgNO_3$,the resistance becomes $75.8 \ \Omega$. Calculate the following: [Conductivity of $0.02 \ M \ KCl = 2.768 \times 10^{-3} \ \Omega^{-1} \ cm^{-1}$] $(i)$ Conductivity of $0.05 \ M \ AgNO_3$ (ii) Molar conductivity of $AgNO_3$ solution.

Match List-$I$ with List-$II$:
List-$I$ (Parameter) List-$II$ (Unit)
$a$. Cell constant $i$. $S\, cm^{2}\, mol^{-1}$
$b$. Molar conductivity $ii$. Dimensionless
$c$. Conductivity $iii$. $m^{-1}$
$d$. Degree of dissociation of electrolyte $iv$. $\Omega^{-1}\, m^{-1}$

Choose the most appropriate answer from the options given below:

What is the $SI$ unit of conductivity?

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