3. For the network in Fig. 4.21 Note: E is also equivalent to the designation Vs or Vr for voltage source and Is is equivalent to Ir for total current of the circuit being analyzed. a. Find currents Is, I2, and Ig. b. Find voltages Vị and Vg. c. Find the power delivered to the 3 kN resistor. T 10053 CIRCUITS 1 R4 9 kfN R5 6 kN + Vs - E = 28 V V R R2 R<3 kN R 10.4 kN 12 k 12 kN Figure 4.21
3. For the network in Fig. 4.21 Note: E is also equivalent to the designation Vs or Vr for voltage source and Is is equivalent to Ir for total current of the circuit being analyzed. a. Find currents Is, I2, and Ig. b. Find voltages Vị and Vg. c. Find the power delivered to the 3 kN resistor. T 10053 CIRCUITS 1 R4 9 kfN R5 6 kN + Vs - E = 28 V V R R2 R<3 kN R 10.4 kN 12 k 12 kN Figure 4.21
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Transcribed Image Text:3. For the network in Fig. 4.21
Note: E is also equivalent to the designation Vs or Vr for voltage source and Iş is
equivalent to Ir for total current of the circuit being analyzed.
a. Find currents Is, I2, and Ig.
b. Find voltages V1 and Vs.
c. Find the power delivered to the 3 kN resistor.
39 | ECET 10053 CIRCUITS 1
R.
9 k.
R5
6 kfN
+ Vs -
E = 28 V
V, R
R2
R 3 kN
R 10.4 kN
12 kfN
12 kN
Figure 4.21
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