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Electrical Engineering and Computer Science

EECS 3220 - Electric Circuits IIÌýCourse Syllabus

Credits/Contact Hours
3 credit hours & two 75-minute lecture contact hours per week.

Textbook

A.R. Hambley, “Electrical Engineering Principles and Applications,â€� 7th edition, Pearson 2014, ISBN:Ìý 0-13-311664-6Ìý

Course Information
Advanced topics including three-phase systems, magnetically-coupled systems, resonance and second-order systems, Laplace transform circuit analysis, Fourier series for periodic waveforms and applications to electric circuits, ideal filters, system modeling and two-port networks.
Prerequisite: EECS 2300; Corequisite: EECS 3210
Required course for EE

Specific Goals - StudentÌýLearning ObjectivesÌý(SLOs)

The students will be able to:Ìý

  1. Analyze a three-phase power circuitÌý
  2. Differentiate between real, reactive, and apparent powerÌý
  3. Convert a time-domain signal into its corresponding phasor-domain representationÌý
  4. Solve first and second order differential equationsÌý
  5. Recognize and analyze various filtering circuitsÌý


Topics

  1. Transient and steady-state response of RL and RC circuits.Ìý
  2. Transient and steady-state response of RLC circuits.ÌýÌý
  3. Three phase circuits and power.ÌýÌý
  4. Frequency response.ÌýÌý
  5. Resonance.ÌýÌý
  6. Laplace domain circuit analysis.ÌýÌý
  7. Circuit application of Fourier series.ÌýÌý
  8. Magnetically coupled circuits.ÌýÌý
  9. Two-port networks.Ìý