Consider his circuit, which has C = 0.50 F and L = 0.20 H. With the switch open, the capacitor is charged up using a 2V battery. The battery is then removed. Then, at time t=0, the switch is closed. a) Immediately before the switch is closed, what’s the charge on the capacitor, Q0? b) Sketch a rough graph of current vs time (after t=0). This graph need not be numerically accurate; I am looking for a general shape. c) When the charge on the capacitor is Q0/2, what current is flowing through the inductor? d)
Consider his circuit, which has C = 0.50 F and L = 0.20 H. With the switch open, the capacitor is charged up using a 2V battery. The battery is then removed. Then, at time t=0, the switch is closed. a) Immediately before the switch is closed, what’s the charge on the capacitor, Q0? b) Sketch a rough graph of current vs time (after t=0). This graph need not be numerically accurate; I am looking for a general shape. c) When the charge on the capacitor is Q0/2, what current is flowing through the inductor? d)
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Consider his circuit, which has C = 0.50 F and L = 0.20 H. With the switch open, the capacitor is charged up using a 2V battery. The battery is then removed. Then, at time t=0, the switch is closed.
a) Immediately before the switch is closed, what’s the charge on the capacitor, Q0?
b) Sketch a rough graph of current vs time (after t=0). This graph need not be numerically accurate; I am looking for a general shape.
c) When the charge on the capacitor is Q0/2, what current is flowing through the inductor?
d)

Transcribed Image Text:L = 0.20 H
switch
C=0.50 F
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