a. Find the value of L in millihenries if the resonant fre- quency is 1800 Hz. b. Calculate X₁ and XÃ. How do they compare? c. d. Find the magnitude of the current Irms at resonance. Find the power dissipated by the circuit at resonance. What is the apparent power delivered to the system at resonance? e. f. What is the power factor of the circuit at resonance? Calculate the Q of the circuit and the resulting bandwidth. Find the cutoff frequencies, and calculate the power dis- sipated by the circuit at these frequencies. h. R ww 4.70 20 x 10-³ sin wot 000 C2 μF

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Question
a. Find the value of L in millihenries if the resonant fre-
quency is 1800 Hz.
b. Calculate X₁ and X. How do they compare?
c. Find the magnitude of the current Irms at resonance.
d. Find the power dissipated by the circuit at resonance.
e. What is the apparent power delivered to the system at
resonance?
f.
What is the power factor of the circuit at resonance?
g. Calculate the Q of the circuit and the resulting bandwidth.
Find the cutoff frequencies, and calculate the power dis-
sipated by the circuit at these frequencies.
h.
R
ww
4.70
20 x 10³ sin wit
voo
C2 μF
Transcribed Image Text:a. Find the value of L in millihenries if the resonant fre- quency is 1800 Hz. b. Calculate X₁ and X. How do they compare? c. Find the magnitude of the current Irms at resonance. d. Find the power dissipated by the circuit at resonance. e. What is the apparent power delivered to the system at resonance? f. What is the power factor of the circuit at resonance? g. Calculate the Q of the circuit and the resulting bandwidth. Find the cutoff frequencies, and calculate the power dis- sipated by the circuit at these frequencies. h. R ww 4.70 20 x 10³ sin wit voo C2 μF
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