Part A
Just after the circuit is completed, what is the voltage across the capacitor?
Vc = 0 V
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Part B
Just after the circuit is completed, what is the voltage drop across the resistor?
Vr = 265 V
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Important: If you use this answer in later parts, use the full unrounded value in your calculations.
Part C
Just after the circuit is completed, what is the charge on the capacitor?
q = 0 C
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Part D
Just after the circuit is completed, what is the current through the resistor?
i = 4.14e10-3 A
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Part E
A long time after the circuit is completed (after many time constants), what is the voltage drop across the capacitor?
Vc =
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Part F
A long time after the circuit is completed (after many time constants), what is the voltage drop across the resistor?
Vr =
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Part G
A long time after the circuit is completed (after many time constants), what is the charge on the capacitor?
q =
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Part H
A long time after the circuit is completed (after many time constants), what is the current through the resistor?
i =
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