(+2 100 90 80 70 R1 Mwmn 50 Q 10mH V1 220 Vrms 60 Hz 0° Capacitance Real Power (UF) (Watts) 60 Computed Values Compute the expected power factor of the circuit given the different capacitance. 801.8910 Reactive Power (Vars) 364.9544 L1 765.6602 393.5990 719.4604 422.8598 660.4029 450.7125 585.1961 473.3027 Power Factor 0.9102 0.8894 0.8621 0.8260 HH 0.7775 C1 10uF ITotal (RMS) mag (A) 4.0047 3.9132 3.7933 3.6343 3.4211
(+2 100 90 80 70 R1 Mwmn 50 Q 10mH V1 220 Vrms 60 Hz 0° Capacitance Real Power (UF) (Watts) 60 Computed Values Compute the expected power factor of the circuit given the different capacitance. 801.8910 Reactive Power (Vars) 364.9544 L1 765.6602 393.5990 719.4604 422.8598 660.4029 450.7125 585.1961 473.3027 Power Factor 0.9102 0.8894 0.8621 0.8260 HH 0.7775 C1 10uF ITotal (RMS) mag (A) 4.0047 3.9132 3.7933 3.6343 3.4211
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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What are the effects of basic electrical components on the average power of the system and what is the concept of power factor.
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