3. Using the Super-position Theorem, calculate VA, VB, and the currents IE1, IR2 (including direction). R1 R2 1kO 2ko A. E1 R3 R4 www 4kQ A 3kQ C 10V E2 12V R7 7kQ R5 R6 C 5kQ 6kQ Is1 1mA Just E1 E2 Isi Total VA VB IEI IR2
3. Using the Super-position Theorem, calculate VA, VB, and the currents IE1, IR2 (including direction). R1 R2 1kO 2ko A. E1 R3 R4 www 4kQ A 3kQ C 10V E2 12V R7 7kQ R5 R6 C 5kQ 6kQ Is1 1mA Just E1 E2 Isi Total VA VB IEI IR2
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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using the Super-position Theorem, calculate VA, VB, and the currents IE1, IR2 (including direction).

Transcribed Image Text:3. Using the Super-position Theorem, calculate VA, VB, and the currents IE1, IR2 (including direction).
R1
R2
1kQ
2k0
A.
E1
R3
R4
3kQ
4kQ
10V
E2
12V
R7
S7kQ
R5
R6
C
Is1
B
1mA
Just
EI
E2
Isı
Total
VA
VB
IEI
IR2
B.

Transcribed Image Text:V. 275 mV
V. 550 mV
VR1
R1
Ref1
VR2
+ -Ret
Ref2
+
Ref1
2kQ
1kQ
A
V -12.0 V
V-11.2 V
V: -4.08 V
E1
MB3
A Ref
R4
VD
VA
A
Ref3
VC
3kQ
4kQ
E2
10V
V: -17.1 V
Ref4
12V
R7
7kQ
B
R6
C
R5
5kQ
6kQ
V. 7.00 V:
V. -16.6 V
Is1
VB
VR7
Ref4
1mA
IEI = 1.35 mA
IR2 = 275 uA
IR6 = 84 uA
VA = -11.2 V
VB = -16.6 V
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