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|a Omar, Abbas.
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|a Electromagnetic Scattering and Material Characterization.
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|a Norwood :
|b Artech House,
|c 2011.
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|a 1 online resource (313 pages)
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|a text
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|6 880-01
|a Electromag netic Scattering and Material Characterization; Contents; Preface; Chapter 1 Introduction; Chapter 2 Fundamentals; Chapter 3 Propagation in Homogeneous Media; Chapter 4 Guided Wave Propagation; Chapter 5 Electromagnetic Cavity Resonators; Chapter 6 Free-Space Measurements--Planar Interfaces; Chapter 7 Free-Space Measurements--Cylindrical andSpherical Interfaces; About the Author; Index.
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|a Based on the author's more-than 30 years of experience, this first-of-its-kind volume presents a comprehensive and systematic analysis of electromagnetic fields and their scattering by material objects. The book considers all three categories of scattering environments commonly used for material measurements - unbounded regions, waveguides, and cavity resonators. The book covers such essential topics as electromagnetic field propagation, radiation, and scattering, containing mathematically rigorous approaches for the computation of electromagnetic fields and the explanation of their behavior.
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|a Print version record.
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|a Includes bibliographical references and index.
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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|a Electromagnetic waves
|x Scattering.
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|a Materials
|x Testing.
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|a Electrical engineering.
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|a Ondes électromagnétiques
|x Diffusion.
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|a Matériaux
|x Essais.
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|a Electromagnetic waves
|x Scattering
|2 fast
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|a Materials
|x Testing
|2 fast
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|i has work:
|a Electromagnetic scattering and material characterization (Text)
|1 https://id.oclc.org/worldcat/entity/E39PCG89t389BvMRpJQwmkPrtq
|4 https://id.oclc.org/worldcat/ontology/hasWork
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|i Print version:
|a Omar, Abbas.
|t Electromagnetic Scattering and Material Characterization.
|d Norwood : Artech House, ©2011
|z 9781596932166
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856 |
4 |
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|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=634510
|z Texto completo
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|6 505-00/(S
|a 4.2.2 Modal Orthogonality and Complex Modes -- 4.3 WAVEGUIDES WITH LOSSY BOUNDARIES -- 4.4 EXCITATION OF WAVEGUIDES -- 4.4.1 Coupled-Mode Formulation -- 4.4.2 Excitation Sources with a Finite Axial Extent -- 4.5 WAVEGUIDE JUNCTIONS -- 4.5.1 Junction Between Two Empty Waveguides with Different Cross-Sections -- 4.5.2 Junction Between Empty and Inhomogeneously Filled Waveguides Sharing theSame Cross-Section -- References -- Chapter 5 Electromagnetic Cavity Resonators -- 5.1 CONSTRUCTION OF COMPLETE SETS OF THREE-DIMENSIONAL VECTOR FUNCTIONS -- 5.1.1 Divergenceless Eigenmodes -- 5.1.2 Irrotational Eigenmodes -- 5.2 RESONANCE MODES IN HOMOGENEOUSLY FILLED CAVITIES -- 5.3 RESONANCE MODES IN INHOMOGENEOUSLY FILLED CAVITIES -- 5.3.1 Coupled-Mode Formulation -- 5.3.2 Modal Orthogonality and Stored Energies -- 5.4 CAVITY RESONATORS WITH LOSSY BOUNDARIES -- 5.5 EXCITATION OF CAVITY RESONATORS -- 5.5.1 Coupled-Mode Formulation -- 5.5.2 Source-Free Fields -- 5.6 APERTURE COUPLING OF CAVITY RESONATORS -- References -- Chapter 6 Free-Space Measurements-Planar Interfaces -- 6.1 INCIDENT, SCATTERED, AND TOTAL FIELDS -- 6.2 MEASUREMENT CONFIGURATION -- 6.3 PLANE-WAVE DECOMPOSITION OF THE FAR FIELD OF ILLUMINATING ANTENNAS -- 6.3.1 Spatially Dependent Field -- 6.3.2 βt -Dependent Field -- 6.3.3 Plane-Wave Interpretation -- 6.3.4 Short- and Open-Circuited Half Spaces -- 6.4 MATERIAL HALF SPACES (REFLECTION MEASUREMENTS ONLY) -- 6.4.1 Matching the βt -Dependent Fields -- 6.4.2 The Spatially Dependent Free-Space Field -- 6.4.3 Measurement Procedure -- 6.5 TRANSVERSALLY DIRECTED SHORT CURRENT ELEMENT AS A RADIATING ANTENNA -- 6.6 SHORT-CIRCUITED MATERIAL SLABS (REFLECTION MEASUREMENTS ONLY) -- 6.6.1 Matching the βt -Dependent Fields -- 6.6.2 The Spatially Dependent Free-Space Field -- 6.6.3 Measurement Procedure.
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|6 505-01/(S
|a 6.7 MATERIAL SLABS (BOTH REFLECTION AND TRANSMISSION MEASUREMENTS) -- 6.7.1 Matching the βt -Dependent Fields -- 6.7.2 The Spatially Dependent Free-Space Fields -- 6.7.3 Measurement Procedure -- References -- Chapter 7 Free-Space Measurements-Cylindrical andSpherical Interfaces -- 7.1 MEASUREMENT CONFIGURATION FOR CYLINDRICAL INTERFACES -- 7.2 CYLINDRICAL-HARMONICS EXPANSION OF THE FAR FIELD OFILLUMINATING ANTENNAS -- 7.2.1 Spatially Dependent Field -- 7.2.2 Spectral (zb -Dependent) Field -- 7.3 MEASUREMENT OF THE CONSTITUTIVE PARAMETERS OF MATERIALCYLINDERS -- 7.3.1 The Spectral (zb -Dependent) Cylindrical Harmonics -- 7.3.2 The Spatial (z-Dependent) Cylindrical Harmonics -- 7.3.3 Measurement Procedure -- 7.4 MEASUREMENT CONFIGURATION FOR SPHERICAL INTERFACES -- 7.5 SPHERICAL-SURFACE-HARMONICS EXPANSION OF THE FAR FIELD OF ILLUMINATING ANTENNAS -- 7.5.1 Incident Field in Local Coordinates -- 7.5.2 Radial Potentials of the Incident Field -- 7.6 MEASUREMENT OF THE CONSTITUTIVE PARAMETERS OF MATERIAL SPHERES -- 7.6.1 Matching the Spherical Surface Harmonics -- 7.6.2 Measurement Procedure -- References -- About the Author -- Index.
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