3, R2=15, 11=27 A & K1=2 in the shown circuit, Find the Norton equivalents at terminals a-b of the circuit shown in figure: be -ve due to the presence of the dependent source) Kli。 R1 1 www on current in ampere)= 3571428571429 5.071428571429 5.714285714286 8.3571428571429 hm)= 21 2 R2 + ه م a ob
3, R2=15, 11=27 A & K1=2 in the shown circuit, Find the Norton equivalents at terminals a-b of the circuit shown in figure: be -ve due to the presence of the dependent source) Kli。 R1 1 www on current in ampere)= 3571428571429 5.071428571429 5.714285714286 8.3571428571429 hm)= 21 2 R2 + ه م a ob
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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
Transcribed Image Text:For R1-8, R2=15, 11-27 A & K1=2 in the shown circuit, Find the Norton equivalents at terminals a-b of the circuit shown in figure:
(Rth may be -ve due to the presence of the dependent source)
Klio
R1
noa
+
Il
R2
ob
IN(Norton current in ampere)=
O a. 8.3571428571429
O b. 25.071428571429
O
c. 16.714285714286
O d. -8.3571428571429
Rth (in ohm)=
O
a. -21
O
b. 21
O
c. -42
O
d. 8.4
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