1 Electrical Engineering DepartmentElectric Circuit Analysis (EE 2020) Dr. Mukesh Kumar Assistant Professor Electrical Engineering Department Reference : Electric circuits, Nilsson and Riedel, 2010, 9th Edition, Prentice Hall
2 After Completion of this course student will haveCourse Outcomes After Completion of this course student will have CO1 Ability to use inductors and capacitors in electrical circuits CO2 Understanding of the concept of first order electrical circuits CO3 Ability to solve the natural and step response of second order electrical circuit. CO4 Understanding of AC circuits using phasor concept and their power calculations. CO5 Design filters using R, L and C components. CO6 Ability to use PSPICE/Simulation tool to design and analyze electrical circuits Course Evaluation Assessment CO1 CO2 CO3 CO4 CO5 CO6 Distribution Quizzes √ 6 % Assignments Test 1 14 % Test 2 Project 10% Final Exam 50 % Total 100%
3 Lecture Plan 1-2 L & T Quiz-1 & Exam-1, Final Exam 3-6Week Topics Delivery Assessment 1-2 Use of inductors, capacitors and their series and parallel combinations in circuits L & T Quiz-1 & Exam-1, Final Exam 3-6 Response of first order RL and RC circuits Assignment-1, Test-1, Final Exam 7-9 Natural and Step response of RLC Circuits Quiz-2, Assignment-2, Test-2, Final Exam 10-12 Sinosoidal steady state analysis and power calculations, Balanced three phase circuits. Assignment-3, Test-2, Final Exam 13-14 Frequency Selective Circuits- Introduction Quiz-3, Final Exam Ability to use PSPICE/Simulation tool to design and analyze electrical circuits Project Seminar, Short Report
4 Lecture-1 Inductance and Capacitance
5 Objectives of Lecture After Completion of this Lecture, student willLO1 Understand the operation of an inductor LO2 Know and be able to use the equations for voltage, current, power , and energy in an inductor LO3 Understand how an inductor behaves in the presence of constant current LO4 Know the requirments for current to be continuous in an inductor
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