In the circuit shown below, if ZLine,1=0.08+j0.2 Ohm and ZLine 2= 0.01 + j0.05 Ohm, find: 1) The total real power losses in the lines. 2) The total reactive power losses in the lines. 3) The source current Is. 4) The source voltage Vs. Is Vs+ 5) The power factor of the source. 0.08 n jo.2 N 0.01 0.05 40 kW 0.86 pf lagging 18 kW 0.8 pf 220/0° V rms lagging
In the circuit shown below, if ZLine,1=0.08+j0.2 Ohm and ZLine 2= 0.01 + j0.05 Ohm, find: 1) The total real power losses in the lines. 2) The total reactive power losses in the lines. 3) The source current Is. 4) The source voltage Vs. Is Vs+ 5) The power factor of the source. 0.08 n jo.2 N 0.01 0.05 40 kW 0.86 pf lagging 18 kW 0.8 pf 220/0° V rms lagging
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 2.1MCQ: The rms value of v(t)=Vmaxcos(t+) is given by a. Vmax b. Vmax/2 c. 2Vmax d. 2Vmax
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Please show formula used and steps as I will study them
![In the circuit shown below, if ZLine,1=0.08+j0.2 Ohm and ZLine 2= 0.01 + j0.05 Ohm, find:
1) The total real power losses in the lines.
2) The total reactive power losses in the
lines.
3) The source current Is.
4) The source voltage Vs.
Is
Vs+
5) The power factor of the source.
0.08 n jo.2 N
0.01 0.05
40 kW
0.86 pf
lagging
18 kW
0.8 pf 220/0° V rms
lagging](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fedbd2085-f0a6-4db7-a229-25c04122e316%2F4b1f92c1-2fca-4674-a8b7-593168296de6%2Fcurkhi_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In the circuit shown below, if ZLine,1=0.08+j0.2 Ohm and ZLine 2= 0.01 + j0.05 Ohm, find:
1) The total real power losses in the lines.
2) The total reactive power losses in the
lines.
3) The source current Is.
4) The source voltage Vs.
Is
Vs+
5) The power factor of the source.
0.08 n jo.2 N
0.01 0.05
40 kW
0.86 pf
lagging
18 kW
0.8 pf 220/0° V rms
lagging
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