In an electromagnetic system, a quantity defined as the ratio of electric dipole moment and magnetic dipole moment has dimension of $\left[\mathrm{M}^{\mathrm{P}} \mathrm{L}^{\mathrm{Q}} \mathrm{T}^R A^{\mathrm{S}}\right]$. The value of P and Q are :
For the determination of refractive index of glass slab, a travelling microscope is used whose main scale contains 300 equal divisions equals to 15 cm . The vernier scale attached to the microscope has 25 divisions equals to 24 divisions of main scale. The least count (LC) of the travelling microscope is (in cm ) :
In an electromagnetic system, the quantity representing the ratio of electric flux and magnetic flux has dimension of $M^P L^Q T^R A^S$, where value of ' $Q$ ' and ' $R$ ' are
$$ \text { Match the LIST-I with LIST-II } $$
LIST-I |
LIST-II |
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---|---|---|---|
A. | $$ \text { Boltzmann constant } $$ |
I | $$ \mathrm{ML}^2 \mathrm{~T}^{-1} $$ |
B | $$ \text { Coefficient of viscosity } $$ |
II | $$ \mathrm{MLT}^{-3} \mathrm{~K}^{-1} $$ |
C | $$ \text { Planck's constant } $$ |
III | $$ \mathrm{ML}^2 \mathrm{~T}^{-2} \mathrm{~K}^{-1} $$ |
D | $$ \text { Thermal conductivity } $$ |
IV | $$ \mathrm{ML}^{-1} \mathrm{~T}^{-1} $$ |