In the circuit shown here, the point ' \( \mathrm{C} \) ' is kept connected to point ' \( \mathr...
In the circuit shown here, the point ' \( \mathrm{C} \) ' is kept connected to point ' \( \mathrm{A} \) ' till the current flowing through the circuit becomes constant. Afterward, suddenly, point ' \( \mathrm{C} \) ' is disconnected from point ' \( \mathrm{A} \) ' and connected
\( \mathrm{P} \) to point ' \( \mathrm{B} \) ' at time \( \mathrm{t}=0 \). Ratio of the voltage across resistance and the inductor at \( \mathrm{t}=\mathrm{L} / \mathrm{R} \) will be equal to :
(A) 1
(B) \( -1 \)
(C) \( \frac{1-\mathrm{e}}{\mathrm{e}} \)
(D) \( \frac{\mathrm{e}}{1-\mathrm{e}} \)
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