8. 9. For a load, Vrms = 110/85° V, Imms = 0.4/15° A. Determine: (a) the complex and apparent powers, (b) the real and reactive powers, and (c) the power factor and the load impedance. In the circuit in Fig. 11.25, the 60- resistor absorbs an average power of 240 W. Find V and the complex power of each branch of the cir- cuit. What is the overall complex power of the circuit? (Assume the current through the 60- resistor has no phase shift.) V (+ 2052 ww 3052 -j102 | j20 Ω 60 Ω

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8.
9.
10.
For a load, Vrms = 110/85° V, Imms = 0.4/15° A. Determine: (a) the
complex and apparent powers, (b) the real and reactive powers, and
(c) the power factor and the load impedance.
In the circuit in Fig. 11.25, the 60- resistor absorbs an average power
of 240 W. Find V and the complex power of each branch of the cir-
cuit. What is the overall complex power of the circuit? (Assume the
current through the 60- resistor has no phase shift.)
2002
ww
€302
-j10 Q
j20 2
60 Ω
Find the value of parallel capacitance needed to correct a load of
140 kVAR at 0.85 lagging pf to unity pf. Assume that the load is sup-
plied by a 110-V (rms), 60-Hz line.
Transcribed Image Text:8. 9. 10. For a load, Vrms = 110/85° V, Imms = 0.4/15° A. Determine: (a) the complex and apparent powers, (b) the real and reactive powers, and (c) the power factor and the load impedance. In the circuit in Fig. 11.25, the 60- resistor absorbs an average power of 240 W. Find V and the complex power of each branch of the cir- cuit. What is the overall complex power of the circuit? (Assume the current through the 60- resistor has no phase shift.) 2002 ww €302 -j10 Q j20 2 60 Ω Find the value of parallel capacitance needed to correct a load of 140 kVAR at 0.85 lagging pf to unity pf. Assume that the load is sup- plied by a 110-V (rms), 60-Hz line.
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