Advanced Engineering ElectromagneticsWiley Global Education, 2012. 4. 13. - 1040ÆäÀÌÁö Balanis' new edition of Advanced Engineering and Electromagnetics features new content on the basics of Metamaterials including figures to demonstrate their properties. Several small sections have been added on Mie series scattering by a PEC sphere; wedge diffraction by a wedge with surface impedances; and curve surface diffraction. Throughout the book, there are more helpful examples, end-of-chapter problems, and references as well as lecture notes in PowerPoint format. The revised edition also features MATLAB programs to animate some of the wave phenomena such as: propagation, reflection and refraction by planar interfaces; scattering by PEC circular cylinder, dielectric circular cylinder, dielectric coated PEC circular cylinder, and PEC sphere; and wedge defraction by 2-D PEC wedge. |
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| 1 | |
| 39 | |
| 99 | |
Wave Propagation and Polarization | 123 |
Reflection and Transmission | 173 |
Auxiliary Vector Potentials Construction of Solutions and Radiation and Scattering Equations | 259 |
Electromagnetic Theorems and Principles | 311 |
Rectangular CrossSection Waveguides and Cavities | 351 |
Geometrical Theory of Diffraction | 741 |
Diffraction by Wedge with Impedance Surfaces | 849 |
Greens Functions | 885 |
Identities | 947 |
Vector Analysis | 951 |
Fresnel Integrals | 961 |
Bessel Functions | 967 |
Legendre Polynomials and Functions | 981 |
Circular CrossSection Waveguides and Cavities | 483 |
Spherical Transmission Lines and Cavities | 549 |
Scattering | 575 |
Integral Equations and the Moment Method | 679 |
The Method of Steepest Descent SaddlePoint Method | 997 |
Index | 1003 |
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amplitude angle Antennas Propagat aperture Assume Bessel boundary conditions circular conducting conductor current density cutoff frequency cylinder derive dielectric constant dielectric slab diffracted field diffraction diffraction coefficients dipole direction electric and magnetic electric conductor electric field electromagnetic equivalent field components free space geometrical optics geometry Green's function ground plane Hankel functions IEEE Trans impedance infinite interface line source lossless magnetic field material Maxwell's equations medium metamaterials Microwave normal phase plane wave plates propagation radiation radius reduces reflection coefficient Repeat Problem represent resonant scattered field Section shown in Figure sin©÷ solution spherical surface wave tangential TE©÷ TM modes TM©÷ uniform plane wave vector potential wave incidence wave traveling waveguide wedge written zero ¥â©÷ ¥â¥á ¥â¥ñ ¥å¥ï ¥ç¥ð ¥è©û ¥è¥å ¥è¥ï ¥ì¥ï ¥ø¥ì¥å

