If C and L denote capacitance and inductan

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If $C$ and $L$ denote capacitance and inductance respectively, then the dimensions of $LC$ are

A

${M^0}{L^0}{T^0}$

B

${M^0}{L^0}{T^2}$

C

${M^2}{L^0}{T^2}$

D

$ML{T^2}$
If $C$ and $L$ denote capacitance and inductance respectively, then the dimensions of $LC$ are
$f = \frac{1}{{2\pi \sqrt {LC} }} \Rightarrow LC = \frac{1}{{{f^2}}} = [{M^0}{L^0}{T^2}]$