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 Chapter 1 Electricity and Magnetism: The Basics1-1 Electrical Charge1-2 Magnetism1-3 ElectromagnetismChapter 2 Basic Electrical Quantities2-1 Units of Electrical Current2-2 Units of Voltage2-3 Units of Resistance2-4 Units of Electrical Power2-5 Units of Time and FrequencyChapter 3 Ohm's Law and the Power FormulaChapter 4 Resistance and Resistors4-1 Resistor Values and Tolerance4-2 Resistor Power Ratings4-3 Types of ResistorsChapter 5 Sources of Voltage and Current5-1 Batteries5-2 Generators5-3 Piezoelectric Sources5-4 Photoelectric SourcesChapter 6 Series Resistor Circuits6-1 Determining Total Resistance6-2 Determining Current,Voltage,and Power for Each ResistanceChapter 7 Parallel Resistor Circuits7-1 Determining Total Resistance7-2 Determining Voltage, Current, and Power for Each ResistanceChapter 8 Combination Resistor Circuits8-1 Kirchhoff's Laws8-2 Determining Total Resistance8-3 Determining Total Voltage, Current, and PowerChapter 9 Capacitance and Capacitors9-1 The Nature of Capacitance9-2 Capacitor Devices9-3 Capacitor Circuits9-4 Series RC Circuits and Time Contants9-5 Unwanted Capacitive EffectsChapter 10 Inductance and Inductors10-1 The Nature of Inductance10-2 Inductor Devices10-3 Inductor Circuits10-4 Series RL Circuits and Time Constants10-5 Unwanted Inductive EffectsChapter 11 Network Theorems11-1 Superposition Theorem11-2 Thevenin's Theorem11-3 Norton's Theorem11-4 Thevenin/Norton Conversions11-5 Converting Current and Voltage SourcesChapter 12 DC Circuit Analysis12-1 Loop Analysis12-2 Mesh Analysis12-3 Node Analysis12-4 Delta and Wye Networks

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Revised: June 06, 2015