Descriptions
Linear Circuits 2: AC Analysis, This course, offered by the Georgia Institute of Technology, teaches how to analyze circuits driven by alternating current (AC). You’ll learn phasor and complex-number techniques for steady-state sinusoidal analysis, model resistors, inductors and capacitors as complex impedances, and apply circuit theorems to solve series and parallel RLC networks. The syllabus covers resonance and bandwidth, frequency response and filter behavior (Bode plots), and calculation of real, reactive and apparent power including power factor. Hands-on worked examples and practice problems reinforce systematic problem-solving so you can confidently analyze AC networks in engineering applications.
What you’ll learn
- Understand phasor representation and complex-number methods for AC analysis
- Model resistors, inductors and capacitors using complex impedance
- Analyze series and parallel RLC circuits and determine resonance and bandwidth
- Compute real, reactive and apparent power and evaluate power factor
- Evaluate frequency response and design/basic analysis of filters using Bode plots
- Apply circuit theorems (Thevenin, Norton, superposition) to AC networks
- Perform steady-state sinusoidal analysis and solve practical circuit problems
- Develop systematic problem-solving skills for engineering AC applications
Who this course is for
- Students and professionals in electrical engineering
- Anyone who needs practical skills in AC circuit analysis
- Individuals preparing for exams or engineering roles involving circuit design
Specificatoin of Linear Circuits 2: AC Analysis
- Publisher : Coursera
- Teacher : Dr. Bonnie H. Ferri
- Language : English
- Level : Intermediate
- Number of Course : 5
- Duration : 3 weeks at 10 hours a week
Content of Linear Circuits 2: AC Analysis

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