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Course Code: 
EE 211
Course Period: 
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Course Content: 

Electrical variables, circuit elements, circuits. Current and voltage measurements. Definition of charge, flux, power and energy. General 2-terminal, multi-terminal and multi-port circuit elements; R, L and C; their electrical features. Commonly used 2-terminal, 2-port and 3-terminal circuit elements and their electrical features. Modeling of physical circuit elements by ideal circuit elements. Kirchhoff’s current equations for nodes and for Gaussian Surfaces.  Kirchhoff’s voltage equations for the loops and meshes. Power and energy conservation theorems in electrical circuits. Time domain analysis of linear resistive circuits using basic circuit equations and, node-voltages and mesh-currents methods. Resistive voltage and current dividers. Equivalent circuits. Source transformations. Modelling. Circuit functions. Circuit theorems. 2-port parameters. Their use in resistive circuit analysis. Time domain analysis of linear resistive 1st-order dynamic circuits (RL- and RC- circuits) by the use of state-variables method. Laboratory experiments.

Course Methodology: 
1: Lecture by instructor, 2: Lecture by instructor with class discussion, 3: Problem solving by instructor, 4: Use of simulations, 5: Problem solving assignment, 6: Reading assignment, 7: Laboratory work, 8: Term research paper, 9: Presentation by guest
Course Evaluation Methods: 
A: Written exam, B: Multiple-choice exam C: Take-home quiz, D: Experiment report, E: Homework, F: Project, G: Presentation by student,

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