1.15. The current, voltage, and power to an inductive load are measured and Figure P1.7 90 V Figure P1.8 Review of Electric Circuit Theory 100 V 90 £2 100 £2 50 £2 • 10 Ω 200 £2 50 V 30 52 ww 40 Ω 10 S2 ·60 V 40 V found to be 10 A, 120 V, and 800 W, respectively. Represent the load by (a) a series equivalent circuit and (b) a parallel equivalent circuit.

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 2.8P: Consider the circuit shown in Figure 2.23 in time domain. Convert the entire circuit into phasor...
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i just need help with 1.15. circuit figures are irrelevant

1.15. The current, voltage, and power to an inductive load are measured and
Figure P1.7
90 V
Figure P1.8
Review of Electric Circuit Theory
100 V
90 £2
100 £2
50 £2
• 10 Ω
200 £2
50 V
30 52
ww
40 Ω
10 S2
·60 V
40 V
found to be 10 A, 120 V, and 800 W, respectively. Represent the load by
(a) a series equivalent circuit and (b) a parallel equivalent circuit.
Transcribed Image Text:1.15. The current, voltage, and power to an inductive load are measured and Figure P1.7 90 V Figure P1.8 Review of Electric Circuit Theory 100 V 90 £2 100 £2 50 £2 • 10 Ω 200 £2 50 V 30 52 ww 40 Ω 10 S2 ·60 V 40 V found to be 10 A, 120 V, and 800 W, respectively. Represent the load by (a) a series equivalent circuit and (b) a parallel equivalent circuit.
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