
- Instructor: Christine Slater
- Lectures: 26
- Students: 340
- Duration: 10 weeks
This tutorial is meant to provide the readers the know-how to analyze and solve any electric circuit or network. After completing this tutorial, you will understand the laws and methods that can be applied to specific electric circuits and networks.
Audience
This tutorial is meant for all the readers who are aspiring to learn the concepts of Network Theory. In some universities, this subject is also called as “Network Analysis & Circuit Theory.”
Prerequisites
There are no major prerequisites to understand the concepts discussed in this tutorial. Once you are through with the first few chapters, you will be quite at ease with the methods and concepts of DC circuits and AC circuits, discussed in later chapters.
Curriculum
- 26 Sections
- 26 Lessons
- 10 Weeks
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- Network Theory - Overview1
- Network Theory - Example Problems1
- Network Theory - Active Elements1
- Network Theory - Passive Elements1
- Network Theory - Kirchhoff’s Laws1
- Electrical Quantity Division Principles1
- Network Theory - Nodal Analysis1
- Network Theory - Mesh Analysis1
- Network Theory - Equivalent Circuits1
- Equivalent Circuits Example Problem1
- Network Theory - Delta to Star Conversion1
- Network Theory - Star to Delta Conversion1
- Network Theory - Network Topology1
- Network Topology Matrices1
- Network Theory - Superposition Theorem1
- Network Theory - Thevenin’s Theorem1
- Network Theory - Norton’s Theorem1
- Maximum Power Transfer Theorem1
- Network Theory - Response of DC Circuits1
- Network Theory - Response of AC Circuits1
- Network Theory - Series Resonance1
- Network Theory - Parallel Resonance1
- Network Theory - Coupled Circuits1
- Network Theory - Two-Port Networks1
- Two-Port Parameter Conversions1
- Network Theory - Filters1