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Introduction | |
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Electromagnetic Fields | |
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Electric Fields | |
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Magnetic Fields | |
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Field Linkage | |
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The Electromagnetic Spectrum | |
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Wireless Communications | |
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Dealing with Units | |
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Working with MATLAB | |
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MATLAB Programs | |
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Wave Fundamentals | |
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Phasors | |
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Summary | |
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Problems | |
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Transmission Lines | |
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Distributed-Parameter Model | |
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Coaxial Cable | |
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Telegraphist?s Equations | |
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Time-Harmonic Waves on Transmission Lines | |
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Characteristic Impedance | |
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Lossless Line | |
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Power Transmission | |
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Terminated T-Lines | |
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Voltage Standing Wave Ratio | |
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Input Impedance | |
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Complex Loads | |
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Special Terminations | |
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The Complete Circuit | |
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The Smith Chart | |
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Smith Chart Derivation | |
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Using the Smith Chart | |
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Impedance Measurement | |
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Impedance Matching | |
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Quarter-Wave Transformer | |
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Matching with the Smith Chart | |
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Admittance of Shunt Stubs | |
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Shunt Stub Matching | |
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Transients | |
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Pulse Response | |
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Practical Application: Schottky-Diode Terminations | |
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Reactive Loads | |
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Time-Domain Reflectometry | |
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Dispersion | |
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Summary | |
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Problems | |
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Electrostatics | |
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Vectors in the Cartesian Coordinate System | |
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Coulomb?s Law | |
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Electric Field Intensity | |
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Field Lines | |
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The Spherical Coordinate System | |
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Line Charges and the Cylindrical Coordinate System | |
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Infinite Length Line of Charge | |
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Ring of Charge | |
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Surface and Volume Charge | |
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Volume Charge | |
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Practical Application: Laser Printer | |
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Electric Flux Density | |
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Gauss?s Law and Applications | |
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Coaxial Cable | |
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Divergence and the Point Form of Gauss?s Law | |
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Electric Potential | |
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Gradient | |
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Conductors and Ohm?s Law | |
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Current and Current Density | |
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Joule?s Law | |
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Dielectrics | |
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Practical Application: Electret Microphone | |
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Boundary Conditions | |
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Boundary Value Problems | |
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Capacitance | |
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Electrostatic Potential Energy | |
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Practical Application: Electrolytic Capacitors | |
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Summary | |
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Problems | |
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Magnetostatics | |
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Magnetic Fields and Cross Product | |
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Oersted?s Experiment | |
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Biot-Savart?s Law | |
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Solenoid | |
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Surface and Volume Current Densities | |
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Ampe`re?s Circuital Law | |
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Curl and the Point Form of Ampe`re?s Circuital Law | |
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Stoke?s Theorem | |
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Magnetic Flux Density | |
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Magnetic Forces | |
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Force on a Current Element | |
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Magnetic Torque and Moment | |
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Practical Application: Loudspeakers | |
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Magnetic Materials | |
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Boundary Conditions | |
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Inductance and Magnetic Energy | |
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Mutual Inductance | |
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Magnetic Energy | |
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Magnetic Circuits | |
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Electromagnets | |
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Practical Application: Maglev | |
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Summary | |
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Problems | |
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Dynamic Fields | |
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Current Continuity and Relaxation Time | |
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Faraday?s Law and Transformer EMF | |
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Transformer EMF | |
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Transformers | |
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Point Form of Faraday?s Law | |
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Faraday?s Law and Motional EMF | |
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Generators | |
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Displacement Current | |
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Maxwell?s Equations | |
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Lossless TEM Waves | |
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Time-Harmonic Fields and Phasors | |
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Summary | |
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Problems | |
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Plane Waves | |
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General Wave Equations | |
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Time-Harmonic Wave Equations | |
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Propagating Fields Relation | |
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Propagation in Lossless, Charge-Free Media | |
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Propagation in Dielectrics | |
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Low-Loss Dielectrics | |
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Loss Tangent | |
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Propagation in Conductors | |
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Current in Conductors | |
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The Poynting Theorem and Power Transmission | |
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UPW Power Transmission | |
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Polarization | |
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Practical Application: Liquid Crystal Displays | |
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Reflection and Transmission at Normal Incidence | |
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General Case | |
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Standing Waves | |
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Reflection and Transmission at Oblique Incidence | |
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TE Polarization | |
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TM Polarization | |
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Summary | |
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Problems | |
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Waveguides | |
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Recta | |