Voltage (V) RC Circuit - Charging You have an RC Circuit - a Resistor and Capacitor (in series) hooked up to an ideal battery. The capacitor starts the system with no charge (no voltage across it). Voltage vs. Time Capacitor 0.632 E 1т 27 3T 4T 57 Time (s) R = 390.00 kiloOhms (kS2) Battery Voltage 12.00 V At a time of 4.90 seconds after you start charging the capacitor, the capacitor has a voltage that is 56.0 % of the maximum possible voltage. What is the value of the capacitor? Put your answer in microFarads (UF). This means you do not need to put units in your answer. Your Answer: 10:54 PM

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Voltage (V)
RC Circuit - Charging
You have an RC Circuit - a Resistor and Capacitor (in series) hooked up to an ideal
battery. The capacitor starts the system with no charge (no voltage across it).
Voltage vs. Time Capacitor
0.632 E
1т
27
3T
4т
57
Time (s)
R = 390.00 kiloOhms (kS2)
Battery Voltage = 12.00 V
At a time of 4.90 seconds after you start charging the capacitor, the capacitor has a
voltage that is 56.0 % of the maximum possible voltage. What is the value of the
capacitor? Put your answer in microFarads (µF). This means you do not need to put
units in your answer.
Your Answer:
10:54 PM
Transcribed Image Text:Voltage (V) RC Circuit - Charging You have an RC Circuit - a Resistor and Capacitor (in series) hooked up to an ideal battery. The capacitor starts the system with no charge (no voltage across it). Voltage vs. Time Capacitor 0.632 E 1т 27 3T 4т 57 Time (s) R = 390.00 kiloOhms (kS2) Battery Voltage = 12.00 V At a time of 4.90 seconds after you start charging the capacitor, the capacitor has a voltage that is 56.0 % of the maximum possible voltage. What is the value of the capacitor? Put your answer in microFarads (µF). This means you do not need to put units in your answer. Your Answer: 10:54 PM
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