#3 - For the RC circuit shown, if the switch is closed at time t=0, at what timet does the potential drop across the resistor equal that across the capacitor? t = R·C · In (2) CORRECT R t = R ·C · In (1) PC Vo t = R·C – e-KC
#3 - For the RC circuit shown, if the switch is closed at time t=0, at what timet does the potential drop across the resistor equal that across the capacitor? t = R·C · In (2) CORRECT R t = R ·C · In (1) PC Vo t = R·C – e-KC
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Can you explain how my professor got his answer
![# 3 - For the RC circuit shown, if the switch is closed at time
t=0, at what time t does the potential drop across the
resistor equal that across the capacitor?
t = R·C · In (2) CORRECT
t = R·C · In (1)
Vo
PC
t = R·C – e- RC
Vo
RC](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F000774e1-5c4d-48f4-ab3a-32fc5a27d75a%2F8a13a48b-eeb4-4a12-8923-20cf5919bfdd%2Fvueydw_processed.png&w=3840&q=75)
Transcribed Image Text:# 3 - For the RC circuit shown, if the switch is closed at time
t=0, at what time t does the potential drop across the
resistor equal that across the capacitor?
t = R·C · In (2) CORRECT
t = R·C · In (1)
Vo
PC
t = R·C – e- RC
Vo
RC
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