R1 R2 A R5 B R4 R3 R6 R7 The circuit above has R1 = 820 Q, R2 = 220 Q, R3 = 470 Q, R4 = 910 Q, R5 = 560 Q, R6 = 330 Q, and R7 = 680 Q and an equivalent resistance looking into points A and B of RAB = 2244.8 Q. The voltage applied to the circuit is VAB = 100 V. Determine the voltage across R5. VR5 = 18.49 V VR5 = 10.51 V Vr5 = 30.29 V O VR5 = 36.53 V %3D

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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R1
R2
A
R5
B
R4
R3
R6
R7
The circuit above has R1 = 820 Q, R2 = 220 Q, R3 = 470 N, R4 = 910 Q, R5 = 560 Q,
R6 = 330 Q, and R7 = 680 Q and an equivalent resistance looking into points A and B
of RAB = 2244.8 . The voltage applied to the circuit is VAB = 100 V. Determine the
voltage across R5.
%3D
= 18.49 V
VR5
Vr5 = 10.51 V
%3D
VR5
= 30.29 V
O Vr5 = 36.53 V
Transcribed Image Text:R1 R2 A R5 B R4 R3 R6 R7 The circuit above has R1 = 820 Q, R2 = 220 Q, R3 = 470 N, R4 = 910 Q, R5 = 560 Q, R6 = 330 Q, and R7 = 680 Q and an equivalent resistance looking into points A and B of RAB = 2244.8 . The voltage applied to the circuit is VAB = 100 V. Determine the voltage across R5. %3D = 18.49 V VR5 Vr5 = 10.51 V %3D VR5 = 30.29 V O Vr5 = 36.53 V
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