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Titlebook: Applied Computational Electromagnetics; State of the Art and Nikolaos K. Uzunoglu,Konstantina S. Nikita,Dimitra Book 2000 Springer-Verlag B

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發(fā)表于 2025-3-21 18:12:54 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Applied Computational Electromagnetics
期刊簡稱State of the Art and
影響因子2023Nikolaos K. Uzunoglu,Konstantina S. Nikita,Dimitra
視頻videohttp://file.papertrans.cn/160/159684/159684.mp4
發(fā)行地址Survey of latest research on computational electromagnetics.Presents fundamental methods with applications.Only book to cover the subject so widely.May be used as a graduate text
學(xué)科分類NATO ASI Subseries F:
圖書封面Titlebook: Applied Computational Electromagnetics; State of the Art and Nikolaos K. Uzunoglu,Konstantina S. Nikita,Dimitra Book 2000 Springer-Verlag B
影響因子@EOI: AEI rEOMETPEI Epigram of the Academy of Plato in Athens Electromagnetism, the science of forces arising from Amber (HAEKTPON) and the stone of Magnesia (MArNHLIA), has been the fOWldation of major scientific breakthroughs, such as Quantum Mechanics and Theory of Relativity, as well as most leading edge technologies of the twentieth century. The accuracy of electromagnetic fields computations for engineering purposes has been significantly improved during the last decades, due to the deVelopment of efficient computational techniques and the availability of high performance computing. The present book is based on the contributions and discussions developed during the NATO Advanced Study Institute on Applied Computational Electromagnetics: State of the Art and Future Trends, which has taken place in Hellas, on the island of Samos, very close to the birthplace of Electromagnetism. The book covers the fundamental concepts, recent developments and advanced applications of Integral Equation and Metliod of Moments Techniques, Finite Element and BOWldary Element Methods, Finite Difference Time Domain and Transmission Line Methods. Furthermore, topics related to Computational Electroma
Pindex Book 2000
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Book 2000book covers the fundamental concepts, recent developments and advanced applications of Integral Equation and Metliod of Moments Techniques, Finite Element and BOWldary Element Methods, Finite Difference Time Domain and Transmission Line Methods. Furthermore, topics related to Computational Electroma
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Mario Dib,Bernardete Ribeiro,Pedro Pratesntegral equation formulation is one of the most powerful technique of analyzing electromagnetic structures with significant practical importance. Topics related to computational aspects are examined and the potential numerical stability of the integral equation-method of moments techniques are emphasized.
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https://doi.org/10.1007/978-3-319-23983-5 field in an orthogonal vector space. The excitation or the position of the antenna elements are found in a relatively simple and easy to use form. Several examples show the applicability of the method.
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