Numerical methods computational electrodynamics de rienen ursula (10 resultados)

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    • Idioma: Inglés

      Editorial: Springer, 2000

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      Librería: Ria Christie Collections, Uxbridge, Reino UnidoRia Christie Collections

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      EUR 165,57

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      Condición: New. In.

    • Idioma: Inglés

      Editorial: Springer Berlin Heidelberg, 2000

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      Librería: moluna, Greven, Alemaniamoluna

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      Kartoniert / Broschiert. Condición: New.

    • Idioma: Inglés

      Editorial: Springer, 2001

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      Librería: BennettBooksLtd, Los Angeles, CA, Estados Unidos de AmericaBennettBooksLtd

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      EUR 207,37

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      paperback. Condición: New. In shrink wrap. Looks like an interesting title.

    • Idioma: Inglés

      Editorial: J.B. Metzler, 2000

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      Librería: Buchpark, Trebbin, AlemaniaBuchpark

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      EUR 123,56

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      Condición: Gut. Zustand: Gut | Seiten: 400 | Sprache: Englisch | Produktart: Bücher | treated in more detail. They are just specimen of larger classes of schemes. Es­ sentially, we have to distinguish between semi-analytical methods, discretiza­ tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell's equations. Semi-analytical methods are concentrated on the analytical level: They use a computer only to evaluate expressions and to solve resulting linear algebraic problems. The best known semi-analytical methods are the mode matching method, which is described in subsection 2. 1, the method of integral equations, and the method of moments. In the method of integral equations, the given boundary value problem is transformed into an integral equation with the aid of a suitable Greens' function. In the method of moments, which includes the mode matching method as a special case, the solution function is represented by a linear combination of appropriately weighted basis func­ tions. The treatment of complex geometrical structures is very difficult for these methods or only possible after geometric simplifications: In the method of integral equations, the Greens function has to satisfy the boundary condi­ tions. In the mode matching method, it must be possible to decompose the domain into subdomains in which the problem can be solved analytically, thus allowing to find the basis functions. Nevertheless, there are some ap­ plications for which the semi-analytic methods are the best suited solution methods. For example, an application from accelerator physics used the mode matching technique (see subsection 5. 4).

    • Idioma: Inglés

      Editorial: J.B. Metzler, 2000

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      Librería: Buchpark, Trebbin, AlemaniaBuchpark

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      Condición: Usado - Excelente

      EUR 127,27

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      Cantidad disponible: 1 disponibles

      Condición: Sehr gut. Zustand: Sehr gut | Seiten: 400 | Sprache: Englisch | Produktart: Bücher | treated in more detail. They are just specimen of larger classes of schemes. Es­ sentially, we have to distinguish between semi-analytical methods, discretiza­ tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell's equations. Semi-analytical methods are concentrated on the analytical level: They use a computer only to evaluate expressions and to solve resulting linear algebraic problems. The best known semi-analytical methods are the mode matching method, which is described in subsection 2. 1, the method of integral equations, and the method of moments. In the method of integral equations, the given boundary value problem is transformed into an integral equation with the aid of a suitable Greens' function. In the method of moments, which includes the mode matching method as a special case, the solution function is represented by a linear combination of appropriately weighted basis func­ tions. The treatment of complex geometrical structures is very difficult for these methods or only possible after geometric simplifications: In the method of integral equations, the Greens function has to satisfy the boundary condi­ tions. In the mode matching method, it must be possible to decompose the domain into subdomains in which the problem can be solved analytically, thus allowing to find the basis functions. Nevertheless, there are some ap­ plications for which the semi-analytic methods are the best suited solution methods. For example, an application from accelerator physics used the mode matching technique (see subsection 5. 4).

    • Condición: Nuevo

      EUR 234,67

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      Paperback. Condición: Brand New. 1st edition. 375 pages. 9.25x6.25x0.50 inches. In Stock.

    • Idioma: Inglés

      Editorial: Springer, 2000

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      Librería: AHA-BUCH GmbH, Einbeck, AlemaniaAHA-BUCH GmbH

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      EUR 224,71

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      Taschenbuch. Condición: Neu. Druck auf Anfrage Neuware - Printed after ordering - treated in more detail. They are just specimen of larger classes of schemes. Es sentially, we have to distinguish between semi-analytical methods, discretiza tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell's equations. Semi-analytical methods are concentrated on the analytical level: They use a computer only to evaluate expressions and to solve resulting linear algebraic problems. The best known semi-analytical methods are the mode matching method, which is described in subsection 2. 1, the method of integral equations, and the method of moments. In the method of integral equations, the given boundary value problem is transformed into an integral equation with the aid of a suitable Greens' function. In the method of moments, which includes the mode matching method as a special case, the solution function is represented by a linear combination of appropriately weighted basis func tions. The treatment of complex geometrical structures is very difficult for these methods or only possible after geometric simplifications: In the method of integral equations, the Greens function has to satisfy the boundary condi tions. In the mode matching method, it must be possible to decompose the domain into subdomains in which the problem can be solved analytically, thus allowing to find the basis functions. Nevertheless, there are some ap plications for which the semi-analytic methods are the best suited solution methods. For example, an application from accelerator physics used the mode matching technique (see subsection 5. 4).

    • Idioma: Inglés

      Editorial: J.B. Metzler, 2000

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      Librería: BUCHSERVICE / ANTIQUARIAT Lars Lutzer, Wahlstedt, AlemaniaBUCHSERVICE / ANTIQUARIAT Lars Lutzer

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      EUR 279,90

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      Softcover. Condición: gut. 2000. Numerical Methods in Computational Electrodynamics In deutscher Sprache. pages.

    • Idioma: Inglés

      Editorial: Springer Berlin Heidelberg Dez 2000, 2000

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      • Impresión bajo demanda

      Librería: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, AlemaniaBuchWeltWeit Ludwig Meier e.K.

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      EUR 160,49

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      Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -treated in more detail. They are just specimen of larger classes of schemes. Es sentially, we have to distinguish between semi-analytical methods, discretiza tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell's equations. Semi-analytical methods are concentrated on the analytical level: They use a computer only to evaluate expressions and to solve resulting linear algebraic problems. The best known semi-analytical methods are the mode matching method, which is described in subsection 2. 1, the method of integral equations, and the method of moments. In the method of integral equations, the given boundary value problem is transformed into an integral equation with the aid of a suitable Greens' function. In the method of moments, which includes the mode matching method as a special case, the solution function is represented by a linear combination of appropriately weighted basis func tions. The treatment of complex geometrical structures is very difficult for these methods or only possible after geometric simplifications: In the method of integral equations, the Greens function has to satisfy the boundary condi tions. In the mode matching method, it must be possible to decompose the domain into subdomains in which the problem can be solved analytically, thus allowing to find the basis functions. Nevertheless, there are some ap plications for which the semi-analytic methods are the best suited solution methods. For example, an application from accelerator physics used the mode matching technique (see subsection 5. 4). 400 pp. Englisch.

    • Idioma: Inglés

      Editorial: Springer, Springer Spektrum Dez 2000, 2000

      3540676295 / 9783540676294

      Serie: Libro 6 de 111 - Lecture Notes in Computational Science and Engineering

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      Librería: buchversandmimpf2000, Emtmannsberg, BAYE, Alemaniabuchversandmimpf2000

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      EUR 160,49

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      Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Titel. Neuware -treated in more detail. They are just specimen of larger classes of schemes. Es sentially, we have to distinguish between semi-analytical methods, discretiza tion methods, and lumped circuit models. The semi-analytical methods and the discretization methods start directly from Maxwell's equations. Semi-analytical methods are concentrated on the analytical level: They use a computer only to evaluate expressions and to solve resulting linear algebraic problems. The best known semi-analytical methods are the mode matching method, which is described in subsection 2. 1, the method of integral equations, and the method of moments. In the method of integral equations, the given boundary value problem is transformed into an integral equation with the aid of a suitable Greens' function. In the method of moments, which includes the mode matching method as a special case, the solution function is represented by a linear combination of appropriately weighted basis func tions. The treatment of complex geometrical structures is very difficult for these methods or only possible after geometric simplifications: In the method of integral equations, the Greens function has to satisfy the boundary condi tions. In the mode matching method, it must be possible to decompose the domain into subdomains in which the problem can be solved analytically, thus allowing to find the basis functions. Nevertheless, there are some ap plications for which the semi-analytic methods are the best suited solution methods. For example, an application from accelerator physics used the mode matching technique (see subsection 5. 4).Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 400 pp. Englisch.