50 V 10 μF wwww 0.40 MO Initially, for the circuit shown, the switch S is open and the capacitor is uncharged.The switch S is closed at times t=0. In Figure 19.18b, when the time t is equal to 20.0s, the potential difference across the resistor is closest to V 0.61 A O V054 BO V0.40 .CO V034 DO V047 E O
50 V 10 μF wwww 0.40 MO Initially, for the circuit shown, the switch S is open and the capacitor is uncharged.The switch S is closed at times t=0. In Figure 19.18b, when the time t is equal to 20.0s, the potential difference across the resistor is closest to V 0.61 A O V054 BO V0.40 .CO V034 DO V047 E O
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![50 V
10 μF
www
0.40 MO
Initially, for the circuit shown, the switch S is open and the capacitor is uncharged.The switch S is closed at time-
t=0. In Figure 19.18b, when the time t is equal to 20.0 s, the potential difference across the resistor is closest
to
A O
V 0.61
V054 BO
V 0.40 .CO
V034 DO
V047 E O](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1709d919-43f4-41ea-b74d-7b04178d80d8%2F5ac1dc11-7e1e-46fc-8f8a-3039cad7f48f%2F7adhl0k_processed.jpeg&w=3840&q=75)
Transcribed Image Text:50 V
10 μF
www
0.40 MO
Initially, for the circuit shown, the switch S is open and the capacitor is uncharged.The switch S is closed at time-
t=0. In Figure 19.18b, when the time t is equal to 20.0 s, the potential difference across the resistor is closest
to
A O
V 0.61
V054 BO
V 0.40 .CO
V034 DO
V047 E O
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