Problem 02: For the following series-parallel network, the supply voltage E 300VZ60° as shown in Figure 02: Here, R = 7.5 Q; XLI = 2.5 Q; XcI = 5 0 R2 = 10 2; X12 = 20 2 R3 = 10 Q; Xc2= 5 2 R4 = 10 Q; XL3 = 40 Q; Xc3 = 20 2 R2 R3 R4 E X13 X12 Figure 02 (b) Total impedance (in both polar and Cartesian forms): ZT=

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Problem 02: For the following series-parallel network, the supply voltage E 300VZ60° as shown in Figure
02:
Here,
+
R2
R3
R4
R1 = 7.5 Q; XL1 = 2.5 Q; XcI = 5 2
E
R2 = 10 Q; X12 = 20 2
R3 = 10 Q; Xc2= 5 2
R4 = 10 Q; XL3 = 40 Q; Xc3 = 20 2
X13
X12
Figure 02
(b) Total impedance (in both polar and Cartesian forms):
ZT=
Transcribed Image Text:Problem 02: For the following series-parallel network, the supply voltage E 300VZ60° as shown in Figure 02: Here, + R2 R3 R4 R1 = 7.5 Q; XL1 = 2.5 Q; XcI = 5 2 E R2 = 10 Q; X12 = 20 2 R3 = 10 Q; Xc2= 5 2 R4 = 10 Q; XL3 = 40 Q; Xc3 = 20 2 X13 X12 Figure 02 (b) Total impedance (in both polar and Cartesian forms): ZT=
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