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Back To: Rao's Faculty Bio

Elements of Engineering
Electromagnetics
Second Edition
Prentice Hall, 1987

By N. Narayana Rao


Table of Contents

PREFACE

1 - VECTORS AND FIELDS

1.1 - Vector Algebra
1.2 - Cartesian Coordinate System
1.3 - Cylindrical and Spherical Coordinate Systems
1.4 - Scalar and Vector Fields
1.5 - Sinusoidally Time-Varying Fields
1.6 - Complex Numbers and Phasor Technique
1.7 - Summary
- Review Questions
- Problems
- PC Excercises

2 - FIELDS AND MATERIALS

2.1 - The Electric Field
2.2 - The Magnetic Field
2.3 - Lorentz Force Equation
2.4 - Conductors and Semiconductors
2.5 - Dielectrics
2.6 - Magnetic Materials
2.7 - Summary
- Review Questions
- Problems
- PC Excercises

3 - MAXWELL'S EQUATIONS IN INTEGRAL FORM AND BOUNDARY CONDITIONS

3.1 - Line and Surface Integrals
3.2 - Faraday's Law
3.3 - Ampere's Circuital Law
3.4 - Gauss' Laws and the Law of Conservation of Charge
3.5 - Application to Static Fields
3.6 - Boundary Conditions
3.7 - Summary
- Review Questions
- Problems
- PC Excercises

4 - MAXWELL'S EQUATIONS IN DIFFERENTIAL FORM AND THE POTENTIAL FUNCTIONS

4.1 - Faraday's Law and Ampere's Circuital Law
4.2 - Gauss' Laws and the Continuity Equation
4.3 - Curl and Divergence
4.4 - Gradient and the Potential Functions
4.5 - Laplacian and the Potential Function Equations
4.6 - Potential Functions for Static Fields
4.7 - Summary
- Review Questions
- Problems
- PC Excercises

5 - TOPICS IN STATIC AND QUASISTATIC FIELDS

5.1 - Energy Storage in Electric and Magnetic Fields
5.2 - Poisson's and Laplace's Equations
5.3 - Method of Moments
5.4 - Low-Frequency Behavior via Quasistatics
5.5 - Magnetic Circuits
5.6 - Electromechanical Energy Conversion
5.7 - Summary
- Review Questions
- Problems
- PC Excercises

6 - UNIFORM PLANE WAVES

6.1 - Uniform Plane Waves in Time Domain in Free Space
6.2 - Sinusoidally Time-Varying Uniform Plane Waves in Free Space
6.3 - Wave Equation and Solution for Material Medium
6.4 - Uniform Plane Waves in Dielectrics and Conductors
6.5 - Poynting Vector, Power Dissipation, and Energy Storage
6.6 - Reflection of Uniform Plane Waves
6.7 - Summary
- Review Questions
- Problems
- PC Excercises

7 - TRANSMISSION LINES 1. TIME DOMAIN ANALYSIS

7.1 - Transmission-Line Equations and Parameters
7.2 - Line Terminated by Resistive Load
7.3 - Transmission-Line Discontinuity
7.4 - Reactive Terminations and Discontinuities
7.5 - Lines with Initial Conditions
7.6 - Interconnections Between Logic Gates
7.7 - Summary
- Review Questions
- Problems
- PC Excercises

8 - TRANSMISSION LINES 2. SINUSOIDAL STEADY-STATE ANALYSIS

8.1 - Short-Circuited Line
8.2 - Line Terminated by Arbitrary Load
8.3 - Transmission-Line Matching
8.4 - The Smith Chart 1. Basic Procedures
8.5 - The Smith Chart 2. Applications
8.6 - The Lossy LIne
8.7 - Summary
- Review Questions
- Problems
- PC Excercises

9 - WAVEGUIDES

9.1 - Uniform Plane Wave Propagation in an Arbitrary Direction
9.2 - TE and TM Waves in a Parallel-Plate Waveguide
9.3 - Dispersion and Group Velocity
9.4 - Rectangular Waveguide and Cavity Resonator
9.5 - Reflection and Refraction of Plane Waves
9.6 - Optical Waveguides
9.7 - Summary
- Review Questions
- Problems
- PC Excercises

10 - ANTENNAS

10.1 - Hertzian Dipole
10.2 - Radiation Resistance and Directivity
10.3 - Linear Antennas
10.4 - Antenna Arrays
10.5 - Image Antennas
10.6 - Receiving Properties
10.7 - Summary
- Review Questions
- Problems
- PC Excercises

APPENDICES

A. Curl, Divergence, Gradient, and Laplacian in Cylindrical and Spherical Coordinate Systems
B. Units and Dimensions

SUGGESTED COLLATERAL AND FURTHER READING

ANSWERS TO SELECTED PROBLEMS

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