Determine the resonant frequency in rad/s and hertz of a series circuit composed of a 100-nF capacitor, 2-mH inductor, and 200-W resistor. @s = 70.7 krad/s, Js = 11.3 kHz @g = 50.3 krad/s, Js = 800 Hz %3D @s = 556 mrad/s, Js = 11.3 kHz %3D @s = 70.7 krad/s, Js = 70.7 kHz %3D

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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Determine the resonant frequency in rad/s and hertz of a series circuit
composed of a 100-nF capacitor, 2-mH inductor, and 200-W resistor.
@s = 70.7 krad/s, Is = 11.3 kHz
@g = 50.3 krad/s, Is =
800 Hz
@s = 556 mrad/s, Is = 11.3 kHz
@g = 70.7 krad/s, Is = 70.7 kHz
Transcribed Image Text:Determine the resonant frequency in rad/s and hertz of a series circuit composed of a 100-nF capacitor, 2-mH inductor, and 200-W resistor. @s = 70.7 krad/s, Is = 11.3 kHz @g = 50.3 krad/s, Is = 800 Hz @s = 556 mrad/s, Is = 11.3 kHz @g = 70.7 krad/s, Is = 70.7 kHz
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