Fundamentals of engineering electromagnetics / David K. Cheng.
By: Cheng, David K. (David Keun)
.
Material type:
BookSeries: Addison-Wesley series in electrical engineering.Publisher: Reading, Mass. : Addison-Wesley Pub. Co, 1993Description: xv, 488 p. : ill. ; 24 cm. + hbk.ISBN: 0201566117.Subject(s): Electrical engineering| Item type | Current library | Call number | Copy number | Status | Barcode | |
|---|---|---|---|---|---|---|
| General lending | MTU Bishopstown Library Lending | 537 (Browse shelf(Opens below)) | 1 | Available | 00030322 |
Enhanced descriptions from Syndetics:
This is a derivative publication of Dr Cheng's Field and Wave Electromagnetics (2nd edition). It has been developed in response to the need for a text that supports the mastery of this difficult subject. Therefore, in addition to presenting electromagnetics in a concise and logical manner, the text includes end-of-section review questions, worked examples, boxed remarks that alert students to key ideas and tricky points, margin notes, and point-by-point chapter summaries. Examples and applications invite students to solve problems and build their knowledge of electromagnetics. Application topics include: electric motors, transmission lines, waveguides, antenna arrays and radar systems.
Bibliography: (pages 473-474) and index.
The electromagnetic model -- Vector analysis -- Static electric fields -- Steady electric currents -- Static magnetic fields -- Time-varying fields and Maxwell's equations -- Plane electromagnetic waves -- Transmission lines -- Waveguides and cavity resonators -- Antennas and antenna arrays.
Table of contents provided by Syndetics
- 1 The Electromagnetic Model
- Overview
- The electromagnetic model
- SI units and universal constants
- Summary
- 2 Vector Analysis
- Overview
- Vector addition and subtraction
- Vector multiplication
- Orthogonal coordinate systems
- Gradient of a scalar field
- Divergence of a vector field
- Divergence theorem
- Curl of a vector field
- Stoke's theorem
- Two null identities
- Field classification and Helmholtz's theorem
- Summary
- Problems
- 3 Static Electric Fields
- Overview
- Fundamental postulates of electrostatics in free space
- Coulomb's law
- Gauss's law and applications
- Electric potential
- Material media in static electric field
- Electric flux density and dielectric constant
- Boundary conditions for electrostatic fields
- Capacitances and capacitors
- Electrostatic energy and forces
- Solution of electrostatic boundary-value problems
- Summary
- Problems
- 4 Steady Electric Currents
- Overview
- Current density and Ohm's law
- Equation of continuity and Kirchoff's current law
- Power dissipation and Joule's law
- Governing equations for steady current density
- Resistance calculations
- Summary
- Problems
- 5 Static Magnetic Fields
- Overview
- Fundamental postulates of magnetostatics in free space
- Vector magnetic potential
- The Biot-Savart law and applications
- The magnetic dipole
- Magnetization and equivalent current densities
- Magnetic field intensity and relative permeability
- Behavior of magnetic materials
- Boundary conditions for magnetostatic fields
- Inductances and inductors
- Magnetic energy
- Magnetic forces and torques
- Summary
- Problems
- 6 Time-Varying Fields and Maxwell's Equations
- Overview
- Faraday's law of electromagnetic induction
- Maxwell's equations
- Potential functions
- Time-harmonic fields
- Summary
- Problems
- 7 Plane Electromagnetic Waves
- Overview
- Plane waves in lossless media
- Plane waves in lossy media
- Group velocity
- Flow of electromagentic power and the poynting vector
- Normal incidence of plane waves at plane boundaries
- Oblique incidence of plane waves at plane boundaries
- Summary
- Problems
- 8 Transmission Lines
- Overview
- General transmission-line equations
- Transmission-line parameters
- Wave characteristics on an infinite transmission line
- Wave characteristics on finite transmission lines
- The Smith chart
- Transmission-line impedance matching
- Summary
- Problems
- 9 Waveguides and Cavity Resonators
- Overview
- General wave behaviors along uniform guiding structures
- Rectrangular waveguides
- Other waveguide types
- Cavity resonators
- Summary
- Problems
- 10 Antennas and Antenna Arrays
- Overview
- The elemental electric dipole
- Antenna patterns and directivity
- Thin linear antennas
- Antenna arrays
- Effective area and backscatter cross section
- Friis transmission formula and radar equation
- Summary
- Problems
- Appendix A Symbols and Units
- Appendix B Some Useful Material Constants
- Bibliography
- Answers to Odd-numbered Problems
- Index
- Back Endpapers