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3.1 Voltage and Current Laws
Kirchhoff ’s Current Law • Kirchhoff ’s Current Law in the Complex
Domain • Kirchhoff ’s Voltage Law • Kirchhoff ’s Voltage Law in the
Complex Domain • Importance of KVL and KCL
3.2 Node and Mesh Analysis
Node Analysis • Mesh Analysis • Summary
3.3 Network Theorems
Linearity and Superposition • The Network Theorems of Thévenin
and Norton • Tellegen’s Theorem • Maximum Power Transfer • The
Reciprocity Theorem • The Substitution and Compensation Theorem
3.4 Power and Energy
Tellegen’s Theorem • AC Steady-State Power • Maximum Power
Transfer • Measuring AC Power and Energy
3.5 Three-Phase Circuits
3.6 Graph Theory
The k-Tree Approach • The Flowgraph Approach • The k-Tree
Approach Versus the Flowgraph Approach • Some Topological
Applications in Network Analysis and Design
3.7 Two-Port Parameters and Transformations
Introduction • Defining Two-Port Networks • Mathematical
Modeling of Two-Port Networsk via z Parameters • Evaluating Two-
Port Network Characteristics in Terms of z Parameters • An Example
Finding z Parameters and Network Characteristics • Additional Two-
Port Parameters and Conversions • Two Port Parameter Selection |
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