2. Measure the impedance (magnitude and phase) of the inductor including the internal resistance at a frequency of 1kHz. (Determine the reactance and internal resistance of the inductor.) (25 pts) Vs = 2 VRMS 1 kHz ટ L = 100 mH jx₁ =? Rint =? R = 100
2. Measure the impedance (magnitude and phase) of the inductor including the internal resistance at a frequency of 1kHz. (Determine the reactance and internal resistance of the inductor.) (25 pts) Vs = 2 VRMS 1 kHz ટ L = 100 mH jx₁ =? Rint =? R = 100
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Question
Measure the impedance (magnitude and phase) of the inductor including the internal resistance at a frequency of
1kHz. (Determine the reactance and internal resistance of the inductor.)
How would use of an osciloscope help solve this problem?

Transcribed Image Text:2. Measure the impedance (magnitude and phase) of the inductor including the internal resistance at a frequency of
1kHz. (Determine the reactance and internal resistance of the inductor.) (25 pts)
Vs = 2 VRMS
1 kHz
ટ
L = 100 mH
jx₁ =?
Rint =?
R = 100
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