An RC circuit, hooked up to a battery as shown in the figure, starts with an uncharged capacitor. The resistance in the circuit'is R = 933.0' 2 the capacitor haš capacitance of C = 35.0 µF and the battery maintains the emf of ɛ = 43.0 V. The switch is closed at time t = 0.0 s and the capacitor begins to charge. R
An RC circuit, hooked up to a battery as shown in the figure, starts with an uncharged capacitor. The resistance in the circuit'is R = 933.0' 2 the capacitor haš capacitance of C = 35.0 µF and the battery maintains the emf of ɛ = 43.0 V. The switch is closed at time t = 0.0 s and the capacitor begins to charge. R
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter29: Direct Current (dc) Circuits
Section: Chapter Questions
Problem 78PQ: In the RC circuit shown in Figure P29.78, an ideal battery with emf and internal resistance r is...
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Can you help with sub question 9B
9a. What is the time constant for this circuit?
9B. What is the charge on the capacitor after the switch has been closed for t = 2.32×10-2 s?
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