3. Write the node voltage equations for Fig. 6.12. 4. Use node analysis to determine the voltage at points A and B with respect to D in Fig. 6.12. R1 R3 8.2 N 5.6 N 13 Vs1 12 V 1 R Vs2 6 V 10 Ω Figure 6.11 R1 680 N IN R2 R3 B 3.3 kN 1.5 kN R4 820 N RL 2.2 kN 15 V IB Ic Figure 6.12

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
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Using node voltage method, please answer number 4 only with complete solution and explanation. Thank you.
3. Write the node voltage equations for Fig. 6.12.
4. Use node analysis to determine the voltage at points A and B with respect to D in
Fig. 6.12.
R1
R3
8.2 0
5.6 N
13
Vs1
12 V
Vs2
6 V
10 Ω
Figure 6.11
680 N
IN
R2
R3
B
A
3.3 kN
1.5 k2
Vs
R4
RL
2.2 kN
15 V
820 N
Ic
D.
Figure 6.12
Transcribed Image Text:3. Write the node voltage equations for Fig. 6.12. 4. Use node analysis to determine the voltage at points A and B with respect to D in Fig. 6.12. R1 R3 8.2 0 5.6 N 13 Vs1 12 V Vs2 6 V 10 Ω Figure 6.11 680 N IN R2 R3 B A 3.3 kN 1.5 k2 Vs R4 RL 2.2 kN 15 V 820 N Ic D. Figure 6.12
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