The following table gives the parameters for a distribution system. This system a) Draw the frequency domain equivalent circuit b) Find the voltage across the load impedance c) Find the average, reactive and complex power of the system d) Calculate the power factor of the source e) What percentage of the average power is dissipated over the line and source impedances find it f) To make the power factor 1, find the value of the circuit element to be connected parallel to the load Parameter Source (rms) Frequency Source Phase Angle source internal impedance Line Impedance Line Length Load Impedance findfind itValue 12kV 60Hz 0 0,5+j0,5 Ω 0,02+j0,03 02/km 200km 55,5+j75,5 Not. Solve this question in detail step by step and explain your requests in detail
The following table gives the parameters for a distribution system. This system a) Draw the frequency domain equivalent circuit b) Find the voltage across the load impedance c) Find the average, reactive and complex power of the system d) Calculate the power factor of the source e) What percentage of the average power is dissipated over the line and source impedances find it f) To make the power factor 1, find the value of the circuit element to be connected parallel to the load Parameter Source (rms) Frequency Source Phase Angle source internal impedance Line Impedance Line Length Load Impedance findfind itValue 12kV 60Hz 0 0,5+j0,5 Ω 0,02+j0,03 02/km 200km 55,5+j75,5 Not. Solve this question in detail step by step and explain your requests in detail
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![The following table gives the parameters for a distribution system. This system
a) Draw the frequency domain equivalent circuit
b) Find the voltage across the load impedance
c) Find the average, reactive and complex power of the system
d) Calculate the power factor of the source
e) What percentage of the average power is dissipated over the line and source
impedances
find it
f) To make the power factor 1, find the value of the circuit element to be connected
parallel to the load
Parameter
Source (rms)
Frequency
Source Phase Angle
source internal impedance
Line Impedance
Line Length
Load Impedance
findfind itValue
12kV
60Hz
0
0,5+j0,5 Ω
0,02+j0,03 02/km
200km
55,5+j75,5 Ω
Not. Solve this question in detail step by step and explain your requests in detail](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F07524b87-da79-48db-85b7-a3719c5ed5a9%2F8c3b8a68-8b51-4d18-b9c0-f08afdcac922%2Fojh2ma9_processed.png&w=3840&q=75)
Transcribed Image Text:The following table gives the parameters for a distribution system. This system
a) Draw the frequency domain equivalent circuit
b) Find the voltage across the load impedance
c) Find the average, reactive and complex power of the system
d) Calculate the power factor of the source
e) What percentage of the average power is dissipated over the line and source
impedances
find it
f) To make the power factor 1, find the value of the circuit element to be connected
parallel to the load
Parameter
Source (rms)
Frequency
Source Phase Angle
source internal impedance
Line Impedance
Line Length
Load Impedance
findfind itValue
12kV
60Hz
0
0,5+j0,5 Ω
0,02+j0,03 02/km
200km
55,5+j75,5 Ω
Not. Solve this question in detail step by step and explain your requests in detail
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