Use the node-voltage method to find the steady-state expression for vo(t) in the circuit in (Figure 1) if vg1=55cos(5000t+53.13∘)Vcos(5000t+53.13∘)V, vg2= 11sin(5000t)Vsin(5000t)V. Write the steady-state expression for vo(t) as vo=Vocos(ωt+ϕ), where −180∘<ϕ≤180∘
Use the node-voltage method to find the steady-state expression for vo(t) in the circuit in (Figure 1) if vg1=55cos(5000t+53.13∘)Vcos(5000t+53.13∘)V, vg2= 11sin(5000t)Vsin(5000t)V. Write the steady-state expression for vo(t) as vo=Vocos(ωt+ϕ), where −180∘<ϕ≤180∘
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Question
Use the node-voltage method to find the steady-state expression for vo(t) in the circuit in (Figure 1) if
vg1=55cos(5000t+53.13∘)Vcos(5000t+53.13∘)V,
vg2= 11sin(5000t)Vsin(5000t)V.
Write the steady-state expression for vo(t) as vo=Vocos(ωt+ϕ), where −180∘<ϕ≤180∘

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Find the numerical value of V..
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Find the numerical value of o
Express your answer in degrees to three significant figures.
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Find the numerical value of w.
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Transcribed Image Text:Part A
Find the numerical value of V..
Express your answer to three significant figures and include the appropriate units.
V. = Value
Submit Request Answer
Part B
Submit
μÃ
Part C
Find the numerical value of o
Express your answer in degrees to three significant figures.
VE] ΑΣΦ. 41 vec
W =
Submit
Request Answer
Units
?
Request Answer
Find the numerical value of w.
Express your answer in radians per second to three significant figures.
195] ΑΣΦ. 11 Ivec
?
0
?
rad/s
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