3.1.48 Use nodal analysis to determine the node voltages defined in the circuit in Fig. P3.1.48. 10 mA ³ 3 A yt V₁ O 15 Ω 2V, 31 San √x 802 + V₂ - V, 30 I + 12 V FIGURE P3.1.48 6Ω 12V V3 + vol 4 Ω 4 A 67x- Vz il V₁
3.1.48 Use nodal analysis to determine the node voltages defined in the circuit in Fig. P3.1.48. 10 mA ³ 3 A yt V₁ O 15 Ω 2V, 31 San √x 802 + V₂ - V, 30 I + 12 V FIGURE P3.1.48 6Ω 12V V3 + vol 4 Ω 4 A 67x- Vz il V₁
Introductory Circuit Analysis (13th Edition)
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![MA
3.1.48 Use nodal analysis to determine the node voltages
defined in the circuit in Fig. P3.1.48.
2Vx
O
F
3 A
V₁
502
31,
+
SUAR
2
V₂
V, 330
+
Ix 6Ω
ov
ELS
8 Ω
ww
FIGURE P3.1.48
12V
V3
12 V (+
4 Ω
ww
4 A
672- Vz
21
V4
3.2.-](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0a18b560-4244-4f9c-8a3f-88ca5d359cd8%2F25ab8cf2-41c2-4898-9bb2-1596dd4776cd%2Fwwrpwgn_processed.jpeg&w=3840&q=75)
Transcribed Image Text:MA
3.1.48 Use nodal analysis to determine the node voltages
defined in the circuit in Fig. P3.1.48.
2Vx
O
F
3 A
V₁
502
31,
+
SUAR
2
V₂
V, 330
+
Ix 6Ω
ov
ELS
8 Ω
ww
FIGURE P3.1.48
12V
V3
12 V (+
4 Ω
ww
4 A
672- Vz
21
V4
3.2.-
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Step 1: Determine node voltages using nodal analysis for given circuit:
VIEWStep 2: Define nodal analysis:
VIEWStep 3: Apply nodal analysis at each node to find nodal equations:
VIEWStep 4: Find nodal equation at node 4:
VIEWStep 5: Find all nodal equations:
VIEWStep 6: Find node voltages:
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