A single phase transmission line feeds a load of power factor cosj = 0.8 under a voltage of V₂ = 10 kV. The total resistance of the line is R=2W and its total inductive reactance is X₁ =3W. The sending end voltage is V₁ = 10.5 kV. Calculate: 1) The voltage drop in the line. 2) The current in the line. 3) The active power absorbed by the load. 4) The Joule's losses in the line. 5) The efficiency of the line.

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
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A single phase transmission line feeds a load of power factor cosj = 0.8 under a voltage
of V₂ = 10 kV.
The total resistance of the line is R=2W and its total inductive reactance is X₁=3W.
The sending end voltage is V₁ = 10.5 kV. Calculate:
1) The voltage drop in the line.
2) The current in the line.
3) The active power absorbed by the load.
4) The Joule's losses in the line.
5) The efficiency of the line.
Transcribed Image Text:A single phase transmission line feeds a load of power factor cosj = 0.8 under a voltage of V₂ = 10 kV. The total resistance of the line is R=2W and its total inductive reactance is X₁=3W. The sending end voltage is V₁ = 10.5 kV. Calculate: 1) The voltage drop in the line. 2) The current in the line. 3) The active power absorbed by the load. 4) The Joule's losses in the line. 5) The efficiency of the line.
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