3. In the circuit below, vs(t) = 10 cos (50,000t -20°)V. Draw the frequency domain circuit showing the phasor voltage and circuit impedances given that R= 2002, C = 0.5μF, L = 0.12H. Determine the source current is (t). is(1) D (1) R Dg(1) C: 4. In the circuit below, vs(t) = 40 cos (200t +30°) V. Calculate the impedance Z of the network connected to the voltage source. Also determine the source current is (t). (1) 200 μF 10 52 30 Ω ; 2 id(1) 350 mH

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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3. In the circuit below, vs(t) = 10 cos (50,000t -20°)V. Draw the frequency domain circuit
showing the phasor voltage and circuit impedances given that R = 2002, C = 0.5μF, L = 0.12H.
Determine the source current is (t).
is(1)
v (1)
R
Ds(1)
C
ele
4. In the circuit below, vs(t) = 40 cos (200t +30°) V. Calculate the impedance Z of the network
connected to the voltage source. Also determine the source current is (t).
is(1) 200μF
30 Ω ;
L
1092
id(1)
50 mH
Transcribed Image Text:3. In the circuit below, vs(t) = 10 cos (50,000t -20°)V. Draw the frequency domain circuit showing the phasor voltage and circuit impedances given that R = 2002, C = 0.5μF, L = 0.12H. Determine the source current is (t). is(1) v (1) R Ds(1) C ele 4. In the circuit below, vs(t) = 40 cos (200t +30°) V. Calculate the impedance Z of the network connected to the voltage source. Also determine the source current is (t). is(1) 200μF 30 Ω ; L 1092 id(1) 50 mH
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