| 書名: | Advanced Engineering Electromagnetics (2版) | |||
| 作者: | C.A.BALANIS | |||
| 版次: | 2 | |||
| ISBN: | 9780470589489 | |||
| 出版社: | John Wiley | |||
| 出版日期: | 2011/12 | |||
| 書籍開數、尺寸: | 26.2*19.1 | |||
| 重量: | 1.71 Kg | |||
| 頁數: | 1040 | |||
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#工程
#電子與電機 #電磁學/天線/微波 |
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【簡介】 Balanis’ second edition of Advanced Engineering Electromagnetics – a global best-seller for over 20 years – covers the advanced knowledge engineers involved in electromagnetic need to know, particularly as the topic relates to the fast-moving, continually evolving, and rapidly expanding field of wireless communications. The immense interest in wireless communications and the expected increase in wireless communications systems projects (antenna, microwave and wireless communication) points to an increase in the number of engineers needed to specialize in this field. 【目錄】 1 Time-Varying and Time-Harmonic Electromagnetic Fields 2 Electrical Properties of Matter 3 Wave Equation and its Solutions 4 Wave Propagation and Polarization 5 Reflection and Transmission 6 Auxiliary Vector Potentials, Construction of Solutions, and Radiation and Scattering Equations 7 Electromagnetic Theorems and Principles 8 Rectangular Cross-Section Waveguides and Cavities 9 Circular Cross-Section Waveguides and Cavities 10 Spherical Transmission Lines and Cavities 11 Scattering 12 Integral Equations and the Moment Method 13 Geometrical Theory of Diffraction 14 Diffraction by Wedge with Impedance Surfaces 15 Green's Functions Appendix I: Identities Appendix II: Vector Analysis Appendix III: Fresnel Integrals Appendix IV: Bessel Functions Appendix V: Legendre Polynomials and Functions Appendix VI: The Method of Steepest Descent (Saddle-Point Method)
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Classical Electrodynamics 3/e, International Adaptation +作者:Jackson +年份:2021 年3 版 +ISBN:9781119770763 +書號:EE0501P +規格:平裝/單色 +頁數:832 +出版商:John Wiley The third edition of the defining text for the graduate-level course in Electricity and Magnetism has finally arrived! It has been 37 years since the first edition and 24 since the second. The new edition addresses the changes in emphasis and applications that have occurred in the field, without any significant increase in length. 目錄 Introduction and Survey Chapter 1 / Introduction to Electrostatics Chapter 2 / Boundary- Value Problems in Electrostatics: I Chapter 3 / Boundary- Value Problems in Electrostatics: II Chapter 4 / Multipoles, Electrostatics of Macroscopic Media, Dielectrics Chapter 5 / Magnetostatics, Faraday’s Law, Quasi-Static Fields Chapter 6 / Maxwell Equations, Conservation Laws Chapter 7 / Plane Electromagnetic Waves and Wave Propagation Chapter 8 / Waveguides, Resonant Cavities, and Optical Fibers Chapter 9 / Radiating Systems, Multipole Fields and Radiation Chapter 10 / Scattering and Diffraction Chapter 11 / Special Theory of Relativity Chapter 12 / Dynamics of Relativistic Particles and Electromagnetic Fields Chapter 13 / Collisions, Energy Loss, and Scattering of Charged Particles, Cherenkov and Transition Radiation Chapter 14 / Radiation by Moving Charges Chapter 15 / Bremsstrahlung, Radiative Beta Processes Chapter 16 / Radiation Damping, Classical Models of Charged Particles A / Appendix on Units and Dimensions B / Appendix on Equations of Macroscopic Electromagnetism
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【簡介】 Balanis’ third edition of Advanced Engineering Electromagnetics - a global best-seller for over 30 years - covers the advanced knowledge engineers involved in electromagnetics need to know, particularly as the topic relates to the fast-moving, continuously evolving, and rapidly expanding field of wireless communications. The immense interest in wireless communications and the expected increase in wireless communications systems projects (antennas, microwaves and wireless communications) points to an increase in the number of engineers needed to specialize in this field.Highlights of the 3rd Edition include: ●A new chapter, on Artificial Impedance Surfaces (AIS), contains material on current and advanced EM technologies, including the exciting and fascinating topic of metasurfaces for: 1.Control and broadband RCS reduction using checkerboard designs. 2.Optimization of antenna fundamental parameters, such as: input impedance, directivity, realized gain, amplitude radiation pattern. 3.Leaky-wave antennas using 1-D and 2-D polarization diverse-holographic high impedance metasurfaces for antenna radiation control and optimization. 4.Associated MATLAB programs for the design of checkerboard metasurfaces for RCS reduction, and metasurface printed antennas and holographic L WA for radiation control and optimization. ●Throughout the book, there are: 1.Additional examples, numerous end-of-chapter problems, and PPT notes. 2.Fifty three MATLAB computer programs for computations, graphical visualizations and animations. 3.Nearly 4,500 multicolor PowerPoint slides are available for self-study or lecture use. CONSTANTINE A. BALANIS is Regents Professor Emeritus of Electrical Engineering at Arizona State University, USA. He received his BSEE from Virginia Tech in 1964, his MEE from the University of Virginia in 1966, his PhD in Electrical Engineering from The Ohio State University in 1969, and an honorary doctorate from the Aristotle University of Thessaloniki (AUTH). Professor Balanis is a Life Fellow of IEEE, author of Antenna Theory: Analysis and Design, and editor of Modern Antenna Handbook, both published by Wiley. 【目錄】 1 Time-Varying and Time-Harmonic Electromagnetic Fields 2 Electrical Properties of Matter 3 Wave Equation and Its Solutions 4 Wave Propagation and Polarization 5 Reflection and Transmission 6 Auxiliary Vector Potentials, Construction of Solutions, and Radiation and Scattering Equations 7 Electromagnetic Theorems and Principles 8 Rectangular Cross-Section Waveguides and Cavities 9 Circular Cross-Section Waveguides and Cavities 10 Spherical Transmission Lines and Cavities 11 Scattering 12 Integral Equations and the Moment Method 13 Geometrical Theory of Diffraction 14 Diffraction by a Wedge with Impedance Surfaces 15 Green’s Functions 16 Artificial Impedance Surfaces Appendix I Identities Appendix II Vector Analysis Appendix III Fresnel Integrals Appendix IV Bessel Functions Appendix V Legendre Polynomials and Functions Appendix VI the Method of Steepest Descent (saddle-point Method)
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