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CIRCUIT ANALYSIS I COURSE IDENTIFICATION AND APPLICATION INFORMATION

Code Name of the Course Unit Semester In-Class Hours (T+P) Credit ECTS Credit
EEE213 CIRCUIT ANALYSIS I 3 4 3 7

KEY LEARNING OUTCOMES OF THE COURSE UNIT (On successful completion of this course unit, students/learners will or will be able to)

LO-1 After completing this course student will be able to explain limitations and benefits of circuit analysis in frequency domain; LO-2 After completing this course student will be able to use equivalent circuits such as source transformation, Thevenin and Norton Equivalent circuits, superposition theorem in circuit analysis in frequency-domain. LO-3 After completing this course student will be able to apply‘mesh-current and node-voltage analysis’ methods to solve linear electrical circuits in frequency domain. LO-4 After completing this course student will be calculate power/energy in frequency-domain. LO-5 After completing this course student will be able to find out laplace/inverse laplace transforms of electrical signals. LO-6 After completing this course student will be able to use equivalent circuits such as source transformation, Thevenin and Norton Equivalent circuits, superposition theorem in circuit analysis in s-domain. LO-7 After completing this course student will be able to apply‘mesh-current and node-voltage analysis’ methods to solve linear electrical circuits in s-domain. LO-8 After compliting this course student will be able to use "transfer function" (1) in analysis of linear circuits, and (2) synthesis of passive filters. LO-9 After completing this course student will be able to analyse linear two-port circuits.