2. For the following circuits: (a) Find the impedance Z(jw) of circuit (a) as a function of win rectangular form (R+jX). (b) Find the admittance Y (jw) of circuit (b) as a function of w in rectangular form (G+jB). (c) Is there a resonance frequency? If so, what would it be? Hint: Remember that resonance occurs when Vin and Iin are in phase, which implies that X (jw) or B(jw) are equal to zero. 1HF 2mH 1mH 5µF $10kQ Vin 1kQvo (t) a) b)
2. For the following circuits: (a) Find the impedance Z(jw) of circuit (a) as a function of win rectangular form (R+jX). (b) Find the admittance Y (jw) of circuit (b) as a function of w in rectangular form (G+jB). (c) Is there a resonance frequency? If so, what would it be? Hint: Remember that resonance occurs when Vin and Iin are in phase, which implies that X (jw) or B(jw) are equal to zero. 1HF 2mH 1mH 5µF $10kQ Vin 1kQvo (t) a) b)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:2. For the following circuits:
(a) Find the impedance Z(jw) of circuit (a) as a function of win rectangular form (R+jX).
(b) Find the admittance Y (jw) of circuit (b) as a function of w in rectangular form (G+jB).
(c) Is there a resonance frequency? If so, what would it be? Hint: Remember that resonance occurs
when Vin and Iin are in phase, which implies that X (jw) or B(jw) are equal to zero.
1HF
2mH
1mH 5µF $10kQ
Vin
1kQvo (t)
a)
b)
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