Let $[{\varepsilon _0}]$ denote the dimensional formula of the permittivity of free space and $[{\mu _0}]$ denote the dimensional formula of the permeability of free space. If $M = \text{mass}$,$L = \text{length}$,$T = \text{time}$,and $I = \text{electric current}$,then:

  • A
    $[\varepsilon _0] = M^{-1}L^{-3}T^2I^2$
  • B
    $[\varepsilon _0] = M^{-1}L^{-3}T^4I^2$
  • C
    $[\mu _0] = MLT^{-2}I^{-2}$
  • D
    None of these

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Similar Questions

Match List-$I$ with List-$II$.
List-$I$List-$II$
$A$. Coefficient of viscosity$I$. $[ML^{-1}T^{-2}]$
$B$. Surface tension$II$. $[ML^2T^{-2}]$
$C$. Pressure$III$. $[ML^0T^{-2}]$
$D$. Surface energy$IV$. $[ML^{-1}T^{-1}]$

Choose the correct answer from the options given below:

The dimensional formula $M{L^2}{T^{ - 3}}$ represents:

Inductance $L$ can be dimensionally represented as

Give the dimensional formula of surface tension.

Give the dimensional formula of the coefficient of viscosity.

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