The capacitor of capacitance C can be charged (with the help of a resistance R ) by a voltage source V , by closing switch $\mathrm{S}_1$ while keeping switch $\mathrm{S}_2$ open. The capacitor can be connected in series with an inductor ' $L$ ' by closing switch $S_2$ and opening $S_1$.
After the capacitor gets fully charged, $S_1$ is opened and $S_2$ is closed so that the inductor is connected in series with the capacitor. Then,
Select the correct option:
A
at $\mathrm{t}=0$, energy stored in the circuit is purely in the form of magnetic energy
B
at any time $\mathrm{t}>0$, current in the circuit is in the same direction
C
at $\mathrm{t}>0$, there is no exchange of energy between the inductor and capacitor
D
at any time $\mathrm{t}>0$, instantaneous current in the circuit may $\mathrm{V} \sqrt{\frac{\mathrm{C}}{\mathrm{L}}}$
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