20 Fig. 1-1 B) Solve for the current through the 5 ohm resistor and the current through th source using Node-Voltage Analysis:

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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3:45 PM | 0,0KB/s e A
LTE
BEE Activity2.pdf
ACADEMIC YEAR 202 1-22
ACTIVITY 2(PROBLEM SOLVING)
BASIC ELECTRICAL ENGINEERING (EE1003)
Q.1)
Solve for the current in the 2 n resistor of the network of Fig. 1-1 by
A). Mesh analysis.
[Ans: 2.98 AJ
20 V
Fig. 1-1
B) Solve for the current through the 5 ohm resistor and the current through the 4V
source using Node-Voltage Analysis:
10
4V
DZA
Q.2)
Find the current through 7k ohm resistor using Norton's theorem?
1k
2k
-3k
Fig 2-1
Solve for the current in the 20 2 resistor of Fig. 4-1 by applvina the
Q.3)
Q.4)
superposition theorem.
Solve for the current in the 20 8 resistor of the network
applying Thevenin' s theorem. [Ans: I(20, = 2.22 A.]
10 N
30 N
Transcribed Image Text:3:45 PM | 0,0KB/s e A LTE BEE Activity2.pdf ACADEMIC YEAR 202 1-22 ACTIVITY 2(PROBLEM SOLVING) BASIC ELECTRICAL ENGINEERING (EE1003) Q.1) Solve for the current in the 2 n resistor of the network of Fig. 1-1 by A). Mesh analysis. [Ans: 2.98 AJ 20 V Fig. 1-1 B) Solve for the current through the 5 ohm resistor and the current through the 4V source using Node-Voltage Analysis: 10 4V DZA Q.2) Find the current through 7k ohm resistor using Norton's theorem? 1k 2k -3k Fig 2-1 Solve for the current in the 20 2 resistor of Fig. 4-1 by applvina the Q.3) Q.4) superposition theorem. Solve for the current in the 20 8 resistor of the network applying Thevenin' s theorem. [Ans: I(20, = 2.22 A.] 10 N 30 N
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