1. In the circuit shown, find the node voltages Va, Vb, Ve and the voltages Vo and V1. 2 A b 12 2 + 4 A 360 Vo

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Publisher:Robert L. Boylestad
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1. In the circuit shown, find the node voltages Va, Vb, Ve and the voltages Vo and Vị.
2A
82
12 2
Vo
4 A
362
2. Using nodal analysis, find the node voltages V. V.. V. and the current Io for the circuit shown.
12 V
12 k2
6 ΚΩ
6 k2
1 k2
C 6 kn
3. The figure below shows the same circuit as in Problem 2 but with the nodes labeled differently. Using
the node voltages calculated in problem 2, find the node voltages Va, Ve, V. DO NOT rewrite or
re-solve the KCL equations for this problem.
12 V
12 k2
6 kn
6 kn
1 k2
f 6 ka
Alternative Node Labeling
Transcribed Image Text:1. In the circuit shown, find the node voltages Va, Vb, Ve and the voltages Vo and Vị. 2A 82 12 2 Vo 4 A 362 2. Using nodal analysis, find the node voltages V. V.. V. and the current Io for the circuit shown. 12 V 12 k2 6 ΚΩ 6 k2 1 k2 C 6 kn 3. The figure below shows the same circuit as in Problem 2 but with the nodes labeled differently. Using the node voltages calculated in problem 2, find the node voltages Va, Ve, V. DO NOT rewrite or re-solve the KCL equations for this problem. 12 V 12 k2 6 kn 6 kn 1 k2 f 6 ka Alternative Node Labeling
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