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
- Analyze a three-phase power circuitÌý
- Differentiate between real, reactive, and apparent powerÌý
- Convert a time-domain signal into its corresponding phasor-domain representationÌý
- Solve first and second order differential equationsÌý
- Recognize and analyze various filtering circuitsÌý
Topics
- Transient and steady-state response of RL and RC circuits.Ìý
- Transient and steady-state response of RLC circuits.ÌýÌý
- Three phase circuits and power.ÌýÌý
- Frequency response.ÌýÌý
- Resonance.ÌýÌý
- Laplace domain circuit analysis.ÌýÌý
- Circuit application of Fourier series.ÌýÌý
- Magnetically coupled circuits.ÌýÌý
- Two-port networks.Ìý