3.80 In the circuit as shown in figure, the switch is closed at t= 0. The current through the capacitor will decrease exponentially with a time constant of magnitude 1Ω ww t = 0 10 V =1 F (a) 0.5s (c) 2s ww 1Ω (b) 1s (d) 4s

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter19: Capacitors
Section: Chapter Questions
Problem 1PP: Fill in all the missing values. Refer to the formulas that follow. Resistance Capacitance Time...
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3.80 In the circuit as shown in figure, the switch is
closed at t = 0. The current through the capacitor
will decrease exponentially with a time constant
of magnitude
i
1Ω
www
t = 0
10 V-
1Ω
(b) 1s
(d) 4s
(a) 0.5s
(c) 2s
=1 F
Transcribed Image Text:3.80 In the circuit as shown in figure, the switch is closed at t = 0. The current through the capacitor will decrease exponentially with a time constant of magnitude i 1Ω www t = 0 10 V- 1Ω (b) 1s (d) 4s (a) 0.5s (c) 2s =1 F
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