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Table of Contents
Voltage, Current, and Resistance
DC Power Supply and Multimeters
Ohm's Law
Kirchhoff's Voltage Law (KVL)
Kirchhoff's Current Law (KCL)
Resistors in Series and in Parallel
Voltage Divider and Current Divider
Node-Voltage Method
Mesh-Current Method
Superposition
Thévenin and Norton Equivalent Circuits
Maximum Power Transfer
Operational Amplifiers
Inductors
Capacitors
Analysis of a Circuit by Solving Differential Equations
First-Order Circuits
Sinusoidal Steady-State
Function Generators and Oscilloscopes
Mutual Inductance and Transformers
Fourier Series
Laplace Transform in Circuit Analysis
Fourier Transform in Circuit Analysis
Second-Order Circuits
Filters
Wrapping Up.
DC Power Supply and Multimeters
Ohm's Law
Kirchhoff's Voltage Law (KVL)
Kirchhoff's Current Law (KCL)
Resistors in Series and in Parallel
Voltage Divider and Current Divider
Node-Voltage Method
Mesh-Current Method
Superposition
Thévenin and Norton Equivalent Circuits
Maximum Power Transfer
Operational Amplifiers
Inductors
Capacitors
Analysis of a Circuit by Solving Differential Equations
First-Order Circuits
Sinusoidal Steady-State
Function Generators and Oscilloscopes
Mutual Inductance and Transformers
Fourier Series
Laplace Transform in Circuit Analysis
Fourier Transform in Circuit Analysis
Second-Order Circuits
Filters
Wrapping Up.