Page 119 -
P. 119
COURSE INFORMATION FOR CURRENT SEMESTER/TERM
Code KUEU2141
Title Electrical Circuit Analysis
Pre-requisite None
Student Learning Time (SLT) 120 hours
Credit 3
1. Perform DC and AC analysis using KCL, KVL, Thevenin, Norton and
Superposition’s theorems. C1
2. Calculate transient response of RC, RL and RLC circuits. C2
Learning Outcomes 3. Calculate current, voltage and power in AC circuits using phasor ap-
proach. C2
4. Describe the concept of mutual inductance and perform
circuit analysis using simple Laplace transform. C3
This course covers the introduction to the Kirchorff’s law, Nodal
Analysis and Thevenins law, mesh analysis and superposition’s law. Calcu-
Synopsis
late current, voltage and power in a circuits using phasor approach. Study
the mutual inductance and transient response in RC, RL and RLC circuits.
40% Continuous Assessments
Assessment
60% Final Examination
David A. Bell. Fundamentals of Electric Circuits. 7 Edition, Oxford Universi-
ty Press. 2012
Alexander & Sadiku. “Fundamental of Electric Circuits”. 4th edition,
McGraw Hill, 2009
Alexander & Saunder, Fundamentals of Electric Circuits, 5th edition
References
McGraw-Hill, 2012
S R Paranjothi. “Electric Circuits Analysis”. New Age Science; 3 edition,
2009
Giorgio Rizzoni. Fundamental of Electrical Engineering. McGraw-Hill .
2010
Soft skills CS3, CT3, LL2
UM-PT01-PK03-BR004(BI)-S04