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Titlebook: Directions in Electromagnetic Wave Modeling; Henry L. Bertoni,Leopold B. Felsen Book 1991 Springer Science+Business Media New York 1991 CO

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Collaborative Dispersion by Silent Robots scattered field and electromagnetic coupling predictions. A typical cavity-obstacle geometry is shown in Figure 1; this geometry is illuminated by an external source. The interior walls of the cavity are assumed to be perfectly conducting but may contain a thin material coating. The HF scattering b
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Damien Imbs,Sergio Rajsbaum,Adrián Valle diagnostic or therapeutic nature. One application is in hyperthermia treatment for cancer, where electromagnetic energy is used as a heat source with the goal of heating tumor tissue without overheating healthy tissue. Another application is in dosimetry, where the goal is to prevent inadvertent he
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Christian Decker,Roger Wattenhofer spectra of such signals, the conventional route of inversion from the frequency domain is often less convenient, and physically less transparent, than direct treatment of time domain events. Analysis and synthesis of such wave solutions require use of source functions (e.g., time-dependent Green’s
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Precision Implants and Instrumentationhe discussion emphasizes the development of a new hybrid analysis that incorporates a surface-wave basis set. Representative examples illustrate the effectiveness of this new method for both scattering and radiation problems involving 2D and 3D objects with coatings.
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Precision Implants and Instrumentation method. The standard integral transformations that are characteristic for this method (Cagniard, 1939, 1962; De Hoop, 1960, 1961, 1988; Aki and Richards, 1980) are applied to the first-order acoustic wave equations of a fluid. The resulting system of differential equations in the depth coordinate i
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