or R1=7, R2=6, R3=6, 12=7 A, I1=8 A & V1=12 V in the hown circuit, Find the Norton equivalents at terminals -b: Vi R2 12 SR3 I1( th= N(Norton current)=

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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For R1=7, R2=6, R3=6, 12=7 A, 11=8 A & V1=12 V in the
shown circuit, Find the Norton equivalents at terminals
a-b :
Vi
R2
12(
R3
I1)
R1
-ob
Rth=
IN(Norton current)=
Transcribed Image Text:For R1=7, R2=6, R3=6, 12=7 A, 11=8 A & V1=12 V in the shown circuit, Find the Norton equivalents at terminals a-b : Vi R2 12( R3 I1) R1 -ob Rth= IN(Norton current)=
For R1=9, R2=1, R3=3, R4=1, K1=0.8 & V1=40 V in the
shown circuit, find the Thevenin equivalent between
terminals a and b:
(Rth may be -ve due to the presence of the dependent
source)
R4
R2
+
vi(+
R3;
Klų
>R1
9어
Vth=
Rth=
Transcribed Image Text:For R1=9, R2=1, R3=3, R4=1, K1=0.8 & V1=40 V in the shown circuit, find the Thevenin equivalent between terminals a and b: (Rth may be -ve due to the presence of the dependent source) R4 R2 + vi(+ R3; Klų >R1 9어 Vth= Rth=
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