Consider the circuit diagram below, where: v₁(t) = 120 cos(377t) V v2(t) = 240 cos (377t +77) V The amplitude of both sources is given in peak, and any phase shifts are given in radians. Determine the current through the component ZR1 by applying the principle of superposition. Take vi(t) as reference. Express the result as a sinusoid in the time domain with phase angles measured in degrees and using peak amplitude. Take the voltage source as the reference waveform. Do not use MATLAB to solve. V2(t) ZC1 -265.23j Ω www ZR1 1000 Ω V1(t) ZL1 3.768j Ω ww ZR2 1000 Ω

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.7P: Let a 100V sinusoidal source be connected to a series combination of a 3 resistor, an 8 inductor,...
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Consider the circuit diagram below, where:
v₁(t) = 120 cos(377t) V
v2(t) = 240 cos (377t +77) V
The amplitude of both sources is given in peak, and any phase shifts are given in
radians. Determine the current through the component ZR1 by applying the
principle of superposition. Take vi(t) as reference. Express the result as a sinusoid
in the time domain with phase angles measured in degrees and using peak
amplitude. Take the voltage source as the reference waveform. Do not use MATLAB
to solve.
V2(t)
ZC1
-265.23j Ω
www
ZR1
1000 Ω
V1(t)
ZL1
3.768j Ω
ww
ZR2
1000 Ω
Transcribed Image Text:Consider the circuit diagram below, where: v₁(t) = 120 cos(377t) V v2(t) = 240 cos (377t +77) V The amplitude of both sources is given in peak, and any phase shifts are given in radians. Determine the current through the component ZR1 by applying the principle of superposition. Take vi(t) as reference. Express the result as a sinusoid in the time domain with phase angles measured in degrees and using peak amplitude. Take the voltage source as the reference waveform. Do not use MATLAB to solve. V2(t) ZC1 -265.23j Ω www ZR1 1000 Ω V1(t) ZL1 3.768j Ω ww ZR2 1000 Ω
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