3. In the RC circuit shown in the figure, an ideal battery with emf Ɛ is connected to a capacitor C. The switch S is initially open and the 0, the switch is closed. capacitor is uncharged. At t = R a) What is the current through c – d at t = 0? d b) What is the current through c – d as t goes to infinity? e c) What is the current through b – e as t goes to infinity?

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S
R
3. In the RC circuit shown in the figure, an ideal battery with emf E is
connected to a capacitor C. The switch S is initially open and the
capacitor is uncharged. At t = 0, the switch is closed.
R
C
a) What is the current through c – d at t = 0?
d
b) What is the current through c – d as t goes to infinity?
e
c) What is the current through b – e as t goes to infinity?
+
3.
Transcribed Image Text:S R 3. In the RC circuit shown in the figure, an ideal battery with emf E is connected to a capacitor C. The switch S is initially open and the capacitor is uncharged. At t = 0, the switch is closed. R C a) What is the current through c – d at t = 0? d b) What is the current through c – d as t goes to infinity? e c) What is the current through b – e as t goes to infinity? + 3.
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