
Advanced Engineering Electromagnetics
Constantine A. Balanis(Author)
Wiley (Publisher)
1st Edition
Published on 23. May 1989
Book
Hardback
1008 pages
978-0-471-62194-2 (ISBN)
Article exhausted; check for reprint
Description
A second course in electromagnetics, offering integrated, detailed coverage of the classical topics, from Maxwell's equations to Green's functions. Covers electromagnetic boundary-value problems in rectangular, cylindrical, and spherical coordinates. Also includes computer programs for the solution of assigned problems.
More details
Edition
1., Auflage
Language
English
Place of publication
New York
United States
Publishing group
John Wiley and Sons Ltd
Target group
College/higher education
Illustrations
Ill.
Dimensions
Height: 25.9 cm
Width: 18.6 cm
Thickness: 45 mm
Weight
1673 gr
ISBN-13
978-0-471-62194-2 (9780471621942)
Schweitzer Classification
Other editions
New editions

Constantine A. Balanis
Advanced Engineering Electromagnetics
Book
02/2012
2nd Edition
Wiley
Unfortunately, price unknown
Article exhausted; check for reprint
Content
Time-Varying and Time-Harmonic Electromagnetic Fields.
Electrical Properties of Matter.
Wave Equation and Its Solutions.
Wave Propagation and Polarization.
Reflection and Transmission.
Auxiliary Vector Potentials, Contruction of Solutions, and Radiation and Scattering Equations.
Electromagnetic Theorems and Principles.
Rectangular Cross-Section Waveguides and Cavities.
Circular Cross-Section Waveguides and Cavities.
Spherical Transmission Lines and Cavities.
Scattering.
Integral Equations and the Moment Method.
Geometrical Theory of Diffraction.
Green's Functions.
Appendices.
Index.
Electrical Properties of Matter.
Wave Equation and Its Solutions.
Wave Propagation and Polarization.
Reflection and Transmission.
Auxiliary Vector Potentials, Contruction of Solutions, and Radiation and Scattering Equations.
Electromagnetic Theorems and Principles.
Rectangular Cross-Section Waveguides and Cavities.
Circular Cross-Section Waveguides and Cavities.
Spherical Transmission Lines and Cavities.
Scattering.
Integral Equations and the Moment Method.
Geometrical Theory of Diffraction.
Green's Functions.
Appendices.
Index.