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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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.

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
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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