In the circuit given below, h = 125 mA and /2 = 45 mA. Write the node-voltage equations by inspection. 20 k2 10 k2 ww 5 ka 10 k2 40 mA The node-voltage equations in matrix form is given by G1 -0.1 -0.05 v1 -0.1 G22 -0.2 -0.05 -0.2 G33 where G11= G22= G33 = 5 a = 2500 225 and -100 C=
In the circuit given below, h = 125 mA and /2 = 45 mA. Write the node-voltage equations by inspection. 20 k2 10 k2 ww 5 ka 10 k2 40 mA The node-voltage equations in matrix form is given by G1 -0.1 -0.05 v1 -0.1 G22 -0.2 -0.05 -0.2 G33 where G11= G22= G33 = 5 a = 2500 225 and -100 C=
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![In the circuit given below. h = 125 mA and 5 = 45 mA. Write the node-voltage equations by inspection.
20 k2
5 kQ
ww
10 k2 2
5 ka
10 k2
40 mA
The node-voltage equations in matrix form is given by
-0.1 -0.05
v1
-0.1
G22
-0.2
-0.05 -0.2
G33
v3
where
G11=
G22
G33
a =
2500
225
and
C=
-100](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fabdaa8be-76ad-4614-bb55-5dc3ce3d6a6b%2F1e92fb51-1e72-4e15-b37d-1ff68a30476c%2Faw6cde_processed.png&w=3840&q=75)
Transcribed Image Text:In the circuit given below. h = 125 mA and 5 = 45 mA. Write the node-voltage equations by inspection.
20 k2
5 kQ
ww
10 k2 2
5 ka
10 k2
40 mA
The node-voltage equations in matrix form is given by
-0.1 -0.05
v1
-0.1
G22
-0.2
-0.05 -0.2
G33
v3
where
G11=
G22
G33
a =
2500
225
and
C=
-100
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