E = 60 V 230° R : 20 Ω 600 VAR (L) 400 W XL ell 3 10 Ω FIG. 19.45 Problem 6 .For the circuit of Fig.6 a. Find the average, reactive, and apparent power for the 20-ohm .resistor b. Repeat part (a) for the 10-ohm .inductive reactance c. Find the total number of watts, volt-amperes reactive, and volt- .amperes, and the power factor Fp .d. Find the current Is

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
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:I₂.
+
E = 60 V 230° (^~
R
20 Ω
600 VAR (L)
400 W
XL
ell
| 10 Ω
FIG. 19.45
Problem 6
.For the circuit of Fig.6
a. Find the average, reactive, and
apparent power for the 20-ohm
.resistor
b. Repeat part (a) for the 10-ohm
.inductive reactance
c. Find the total number of watts,
volt-amperes reactive, and volt-
.amperes, and the power factor Fp
.d. Find the current Is
Transcribed Image Text::I₂. + E = 60 V 230° (^~ R 20 Ω 600 VAR (L) 400 W XL ell | 10 Ω FIG. 19.45 Problem 6 .For the circuit of Fig.6 a. Find the average, reactive, and apparent power for the 20-ohm .resistor b. Repeat part (a) for the 10-ohm .inductive reactance c. Find the total number of watts, volt-amperes reactive, and volt- .amperes, and the power factor Fp .d. Find the current Is
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