Parta of the drawing shows a resistor and a charged capacitor wired in series. When the switch is closed, the capacitor discharges as charge moves from one plate to the other. Part b shows the amount of charge remaining on each plate of the capacitor as a function of time. In part cof the drawing, the switch has been removed and an ac generator has been inserted into the circuit. The circuit elements in the drawing have the following values: R-12.00, Vrms = 30.0V for the generator, and f = 365 Hz for the generator. The time constant for the circuit in part a is 7=3x104s. What is the rms current in the circuit in part c? Irms= (a) Switch (b) (c) ! A

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Parta of the drawing shows a resistor and a charged capacitor wired in series. When the switch is closed, the capacitor discharges as
charge moves from one plate to the other. Part b shows the amount of charge remaining on each plate of the capacitor as a function
of time. In part cof the drawing, the switch has been removed and an ac generator has been inserted into the circuit. The circuit
elements in the drawing have the following values: R-12.00, Vrms = 30.0V for the generator, and f = 365 Hz for the generator. The
time constant for the circuit in part a is 7=3x104s. What is the rms current in the circuit in part c?
Irms=
(a)
Switch
(b)
(c)
!
A
Transcribed Image Text:Parta of the drawing shows a resistor and a charged capacitor wired in series. When the switch is closed, the capacitor discharges as charge moves from one plate to the other. Part b shows the amount of charge remaining on each plate of the capacitor as a function of time. In part cof the drawing, the switch has been removed and an ac generator has been inserted into the circuit. The circuit elements in the drawing have the following values: R-12.00, Vrms = 30.0V for the generator, and f = 365 Hz for the generator. The time constant for the circuit in part a is 7=3x104s. What is the rms current in the circuit in part c? Irms= (a) Switch (b) (c) ! A
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