8) Initially, for the circuit shown, the switch S is open and the capacitor voltage is 80 [V]. The switch S is closed at time t = 0. In the figure shown, the capacitor voltage when the time t is equal to 40.0 [s] is closest to: A) 53 [V] B) 60 [V] C) 66 [V] D) 73 [V] E) 80 [V] 16 μF 6.1 ΜΩ
8) Initially, for the circuit shown, the switch S is open and the capacitor voltage is 80 [V]. The switch S is closed at time t = 0. In the figure shown, the capacitor voltage when the time t is equal to 40.0 [s] is closest to: A) 53 [V] B) 60 [V] C) 66 [V] D) 73 [V] E) 80 [V] 16 μF 6.1 ΜΩ
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![8) Initially, for the circuit shown, the switch
S is open and the capacitor voltage is 80
[V]. The switch S is closed at time t = 0. In
the figure shown, the capacitor voltage
when the time t is equal to 40.0 [s] is
closest to:
A) 53 [V]
B) 60 [V]
C) 66 [V]
D) 73 [V]
E) 80 [V]
16 μF
E
6.1 ΜΩ](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F79b64a3f-9489-43a6-bd02-d2e47f0f97e8%2F47a63864-4337-4087-b77d-aa43c8e0e865%2Fjf7xc9x_processed.jpeg&w=3840&q=75)
Transcribed Image Text:8) Initially, for the circuit shown, the switch
S is open and the capacitor voltage is 80
[V]. The switch S is closed at time t = 0. In
the figure shown, the capacitor voltage
when the time t is equal to 40.0 [s] is
closest to:
A) 53 [V]
B) 60 [V]
C) 66 [V]
D) 73 [V]
E) 80 [V]
16 μF
E
6.1 ΜΩ
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