Creating materials with a desired refraction coefficient

Creating Materials with a Desired Refraction Coefficient' provides a recipe for creating materials with a desired refraction coefficient, and the many-body wave scattering problem for many small impedance bodies is solved. The physical assumptions make the multiple scattering effects essential....

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Hlavní autor: Ramm, A. G. (Alexander G.) (Autor)
Korporace: IOPscience (online služba) (Distributor) 
Morgan & Claypool Publishers (Nakladatel, vydavatel) 
Institute of Physics Publishing (Nakladatel, vydavatel) 
Médium: E-kniha
Jazyk:angličtina
Vydáno: San Rafael : Morgan & Claypool Publishers, 2017
Edice:IOP concise physics
Žánr/forma:monografie
elektronické knihy
ISBN:978-1-6817-4708-8
978-1-6817-4710-1
978-1-6817-4709-5
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On-line přístup:Plný text
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100 1 |a Ramm, A. G.  |q (Alexander G.)  |4 aut 
245 1 0 |a Creating materials with a desired refraction coefficient /  |c Alexander G. Ramm 
264 1 |a San Rafael :  |b Morgan & Claypool Publishers,  |c [2017] 
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490 1 |a IOP concise physics,  |x 2053-2571 
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505 0 |a 1. Introduction -- 2. Wave scattering by many small impedance particles -- 2.1. Scalar wave scattering by one small body of an arbitrary shape -- 2.2. Scalar wave scattering by many small bodies of an arbitrary shape -- 3. Creating materials with a desired refraction coefficient -- 3.1. Scalar wave scattering: formula for the refraction coefficient -- 3.2. A recipe for creating materials with a desired refraction coefficient -- 3.3. A discussion of the practical implementation of the recipe -- 3.4. Summary of the results -- 4. Wave-focusing materials -- 4.1. What is a wave-focusing material? -- 4.2. Creating wave-focusing materials -- 4.3. Computational aspects of the problem -- 4.4. Open problems -- 4.5. Summary of the results -- 5. On non-over-determined inverse problems -- 5.1. Introduction -- 5.2. Proof of theorem 5.1.1 -- 5.3. A numerical method 
520 |a Creating Materials with a Desired Refraction Coefficient' provides a recipe for creating materials with a desired refraction coefficient, and the many-body wave scattering problem for many small impedance bodies is solved. The physical assumptions make the multiple scattering effects essential. On the basis of this theory, a recipe for creating materials with a desired refraction coefficient is given. Technological problems are formulated which, when solved, make the theory practically applicable. The Importance of a problem of producing a small particle with a desired boundary impedance is emphasized, and inverse scattering with non-over-determined scattering data is considered. 
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