A single-phase electrical installation, supplied by a volta includes in Two single-phase motors, each of useful power P,=2000W, efficiency n=0.8 and power factor cosp = 0.75. Four incandescent lamps of 200W each. Two single-phase air conditioners, each of absorbed power P. 1000 W and power factor cosp=0.8. 1- Calculate the total active power of the installation 2- Calculate the total reactive power of the installation Calculate the total apparent power of the installation 4- Calculate the total power factor of the installation 5- Calculate the intensity of the total current 3-

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 2.21P: An industrial plant consisting primarily of induction motor loads absorbs 500 kW at 0.6 power factor...
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A single-phase electrical installation, supplied by a voltage of 220V; 50Hz, includes in parallel:
Two single-phase motors, each of useful power P, = 2000W, efficiency n = 0.8 and power factor cosp = 0.75.
Four incandescent lamps of 200W each.
Two single-phase air conditioners, each of absorbed power P. 1000 W and power factor cosp=0.8.
1- Calculate the total active power of the installation
2- Calculate the total reactive power of the installation
3- Calculate the total apparent power of the installation
4- Calculate the total power factor of the installation
5- Calculate the intensity of the total current
Transcribed Image Text:A single-phase electrical installation, supplied by a voltage of 220V; 50Hz, includes in parallel: Two single-phase motors, each of useful power P, = 2000W, efficiency n = 0.8 and power factor cosp = 0.75. Four incandescent lamps of 200W each. Two single-phase air conditioners, each of absorbed power P. 1000 W and power factor cosp=0.8. 1- Calculate the total active power of the installation 2- Calculate the total reactive power of the installation 3- Calculate the total apparent power of the installation 4- Calculate the total power factor of the installation 5- Calculate the intensity of the total current
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