The second order RLC circuit below has a DC source voltage V=220V. L=2mH, C=0.05µF and R=160. Initially, both the capacitor and the inductor are discharged. If the switch is closed at t=0, then the damping factor a and the resonant frequency wo are equal to: 一 W D %3D Select one: O a, 40000, 100000 O b. None of these O c. 4000. 100000 O d. 20000, 50000

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter23: Resistive-inductive-capacitive Series Circuits
Section: Chapter Questions
Problem 1PA: You are an electrician working in a plant. A series resonant circuit is to be used to produce a high...
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The second order RLC circuit below has a DC source voltage V-220V, L=2mH, C=0.05µF and R=160. Initially, both the capacitor and the inductor
are discharged. If the switch is closed at t=0, then the damping factor a and the resonant frequency wo are equal to:
R
D
V,
Select one:
O a, 40000, 100000
O b. None of these
O c. 4000. 100000
O d. 20000, 50000
Transcribed Image Text:The second order RLC circuit below has a DC source voltage V-220V, L=2mH, C=0.05µF and R=160. Initially, both the capacitor and the inductor are discharged. If the switch is closed at t=0, then the damping factor a and the resonant frequency wo are equal to: R D V, Select one: O a, 40000, 100000 O b. None of these O c. 4000. 100000 O d. 20000, 50000
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