In the circuit shown in the figure, the switch \( \mathrm{S} \) is initially open and the capaci...
In the circuit shown in the figure, the switch \( \mathrm{S} \) is initially open and the capacitor is initially uncharged. \( \mathrm{I}_{1}, \mathrm{I}_{2} \) and \( \mathrm{I}_{3} \) represent the current in the resistance \( 2 \Omega, 4 \Omega \) and \( 8 \Omega \) respectively.
(A) Just after the switch \( \mathrm{S} \) is closed, \( \mathrm{I}_{1}=3 \mathrm{~A}, \mathrm{I}_{2}=3 \mathrm{~A} \) and \( \mathrm{I}_{3}=0 \)
\( P \)
(B) Just after the switch \( \mathrm{S} \) is closed, \( \mathrm{I}_{1}=3 \mathrm{~A}, \mathrm{I}_{2}=0 \) and \( \mathrm{I}_{3}=0 \)
(C) long time after the switch \( \mathrm{S} \) is closed, \( \mathrm{I}_{1}=0.6 \mathrm{~A}, \mathrm{I}_{2}=0 \) and \( \mathrm{I}_{3}=0 \)
- (D) long after ane switch \( \mathrm{S} \) is closed, \( \mathrm{I}_{1}=\mathrm{I}_{2}=\mathrm{I}_{3}=0.6 \mathrm{~A} \).
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