Analytical Techniques In The Theory Of Guided Waves


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Analytical Techniques in the Theory of Guided Waves


Analytical Techniques in the Theory of Guided Waves

Author: Raj Mittra

language: en

Publisher:

Release Date: 1971


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Field Theory of Guided Waves


Field Theory of Guided Waves

Author: Robert E. Collin

language: en

Publisher: John Wiley & Sons

Release Date: 1990-12-15


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"Co-published with Oxford University Press Long considered the most comprehensive account of electromagnetic theory and analytical methods for solving waveguide and cavity problems, this new Second Edition has been completely revised and thoroughly updated -- approximately 40% new material!Packed with examples and applications FIELD THEORY OF GUIDED WAVES provides solutions to a large number of practical structures of current interest. The book includes an exceptionally complete discussion of scalar and Dyadic Green functions. Both a valuable review and source of basic information on applied mathematical topics and a hands-on source for solution methods and techniques, this book belongs on the desk of all engineers working in microwave and antenna systems!" Sponsored by: IEEE Antennas and Propagation Society

Wave Dynamics, Mechanics and Physics of Microstructured Metamaterials


Wave Dynamics, Mechanics and Physics of Microstructured Metamaterials

Author: Mezhlum A. Sumbatyan

language: en

Publisher: Springer

Release Date: 2019-05-17


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This book addresses theoretical and experimental methods for exploring microstructured metamaterials, with a special focus on wave dynamics, mechanics, and related physical properties. The authors use various mathematical and physical approaches to examine the mechanical properties inherent to particular types of metamaterials. These include: • Boundary value problems in reduced strain gradient elasticity for composite fiber-reinforced metamaterials • Self-organization of molecules in ferroelectric thin films • Combined models for surface layers of nanostructures • Computer simulation at the micro- and nanoscale • Surface effects with anisotropic properties and imperfect temperature contacts • Inhomogeneous anisotropic metamaterials with uncoupled and coupled surfaces or interfaces • Special interface finite elements and other numerical and analytical methods for composite structures