H.W. 3.1: Obtain the node voltages in the circuit in Figure below. Answer: vị =-2 V, v2 =-14 V. 1A 20 4A 2. ww

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ISBN:9780133923605
Author:Robert L. Boylestad
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H.W. 3.1: Obtain the node voltages in the circuit in Figure below.
Answer: Vi =-2 V, v2 =-14 V.
62
ww
1
1A O
4A
H.W. 3.2: For the circuit in Figure below, obtain vVjand v2.
Answer: Vi = 45 V, v2 = 42 V
ww
6 A
10 2
4Ω ξ
O 3A
H.W. 3.3: Given the circuit in Figure below, calculate the currents i through i4.
Answer: i = 4 A, iz = 2 A
2A
iz = 1 A, i4 = 2 A
4 A
5Ωξ 10Ω
10Ω
5A
H.W. 3.4: Calculate vo in the circuit in Figure below using nodal analysis.
Answer: vo = 3.652 V
32
ww
12 V
8Ω
2v
1
H.W. 3.5: Find i, in the circuit in Figure below using nodal analysis.
12
Answer: io =-4 A
ww
2i,
20
4Ω
Transcribed Image Text:H.W. 3.1: Obtain the node voltages in the circuit in Figure below. Answer: Vi =-2 V, v2 =-14 V. 62 ww 1 1A O 4A H.W. 3.2: For the circuit in Figure below, obtain vVjand v2. Answer: Vi = 45 V, v2 = 42 V ww 6 A 10 2 4Ω ξ O 3A H.W. 3.3: Given the circuit in Figure below, calculate the currents i through i4. Answer: i = 4 A, iz = 2 A 2A iz = 1 A, i4 = 2 A 4 A 5Ωξ 10Ω 10Ω 5A H.W. 3.4: Calculate vo in the circuit in Figure below using nodal analysis. Answer: vo = 3.652 V 32 ww 12 V 8Ω 2v 1 H.W. 3.5: Find i, in the circuit in Figure below using nodal analysis. 12 Answer: io =-4 A ww 2i, 20 4Ω
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