In the circuit given in Figure 2, voad(t) = /2-80 cos(4f)V a) Express each circuit element in phasor domain. b) Find the equivalent load impedance (Z1oad). c) Calculate the phasor value for the load current Ijoad- Write down time domain expression for the same current ijoad(1). d) Calculate the phasor value for the source voltage Vs. Write down time domain expression for the same voltage v,(t). e) Calculate the active, reactive and apparent power of the load. Determine the power factor. 4H İload(t) 5y N v,(t) Vload(t) 5H 25mF LOAD all

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Y=3
In the circuit given in Figure 2, vead(t) = /2-80 cos(4f)V
a) Express each circuit element in phasor domain.
b) Find the equivalent load impedance (Złoad).
c) Calculate the phasor value for the load current Ijoad- Write down time domain expression for the
same current ijoad(1).
d) Calculate the phasor value for the source voltage Vs. Write down time domain expression for the
same voltage v,(t).
e) Calculate the active, reactive and apparent power of the load. Determine the power factor.
4H
İjoad(t) 5y N
v.(t)
V load(t)
5H
25mF
LOAD
all
Transcribed Image Text:In the circuit given in Figure 2, vead(t) = /2-80 cos(4f)V a) Express each circuit element in phasor domain. b) Find the equivalent load impedance (Złoad). c) Calculate the phasor value for the load current Ijoad- Write down time domain expression for the same current ijoad(1). d) Calculate the phasor value for the source voltage Vs. Write down time domain expression for the same voltage v,(t). e) Calculate the active, reactive and apparent power of the load. Determine the power factor. 4H İjoad(t) 5y N v.(t) V load(t) 5H 25mF LOAD all
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