5. Nodal Analysis of Relatively Complex Circuit a) For the circuit below, write the equations necessary to find (V1, V2, V3,V4, V5,¡¸1,į≤2,į≤3, Vb,ia) b) Solve these for all these unknows as a function of Vin c) Write the equations necessary for solving for (V1, V2, V3,V‚½‚½‚½) using the standard nodal 5 b analysis approach. Clearly identify any supernodes and quasi-supernodes. d) Solve equations from (c) and compare your results. м V5 2ΚΩ İ$2 2Vb 5ΚΩ İ$3 (20ΚΩ)1,1 + Vb V3 V1 м M 2ΚΩ la 20k≤2 5ΚΩ İs1 5mA 4ia Vin 4ΚΩ V₂
5. Nodal Analysis of Relatively Complex Circuit a) For the circuit below, write the equations necessary to find (V1, V2, V3,V4, V5,¡¸1,į≤2,į≤3, Vb,ia) b) Solve these for all these unknows as a function of Vin c) Write the equations necessary for solving for (V1, V2, V3,V‚½‚½‚½) using the standard nodal 5 b analysis approach. Clearly identify any supernodes and quasi-supernodes. d) Solve equations from (c) and compare your results. м V5 2ΚΩ İ$2 2Vb 5ΚΩ İ$3 (20ΚΩ)1,1 + Vb V3 V1 м M 2ΚΩ la 20k≤2 5ΚΩ İs1 5mA 4ia Vin 4ΚΩ V₂
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Question
5. Nodal Analysis of Relatively Complex Circuit
a) For the circuit below, write the equations necessary to find (V1, V2, V3, V4, V5, i_s1, i_s2, i_s3, vb, i_a)
b) Solve these for all these unknows as a function of v_in
c) Write the equations necessary for solving for (V1, V2, V3, V4, V5, v_b, i_a) using standard nodal
d) Solve equations from (c) and compare your results.

Transcribed Image Text:5. Nodal Analysis of Relatively Complex Circuit
a) For the circuit below, write the equations necessary to find (V1, V2, V3,V4, V5,¡¸1,į≤2,į≤3, Vb,ia)
b) Solve these for all these unknows as a function of Vin
c) Write the equations necessary for solving for (V1, V2, V3,V‚½‚½‚½) using the standard nodal
5 b
analysis approach. Clearly identify any supernodes and quasi-supernodes.
d) Solve equations from (c) and compare your results.
м
V5
2ΚΩ
İ$2
2Vb
5ΚΩ
İ$3
(20ΚΩ)1,1
+ Vb
V3
V1
м
M
2ΚΩ
la
20k≤2
5ΚΩ
İs1
5mA
4ia
Vin
4ΚΩ
V₂
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