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Titlebook: Introduction to the Finite Element Method in Electromagnetics; Anastasis C. Polycarpou Book 2006 Springer Nature Switzerland AG 2006

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書目名稱Introduction to the Finite Element Method in Electromagnetics
編輯Anastasis C. Polycarpou
視頻videohttp://file.papertrans.cn/475/474353/474353.mp4
叢書名稱Synthesis Lectures on Computational Electromagnetics
圖書封面Titlebook: Introduction to the Finite Element Method in Electromagnetics;  Anastasis C. Polycarpou Book 2006 Springer Nature Switzerland AG 2006
描述This series lecture is an introduction to the finite element method with applications in electromagnetics. The finite element method is a numerical method that is used to solve boundary-value problems characterized by a partial differential equation and a set of boundary conditions. The geometrical domain of a boundary-value problem is discretized using sub-domain elements, called the finite elements, and the differential equation is applied to a single element after it is brought to a “weak” integro-differential form. A set of shape functions is used to represent the primary unknown variable in the element domain. A set of linear equations is obtained for each element in the discretized domain. A global matrix system is formed after the assembly of all elements. This lecture is divided into two chapters. Chapter 1 describes one-dimensional boundary-value problems with applications to electrostatic problems described by the Poisson‘s equation. The accuracy of the finite element methodis evaluated for linear and higher order elements by computing the numerical error based on two different definitions. Chapter 2 describes two-dimensional boundary-value problems in the areas of electr
出版日期Book 2006
版次1
doihttps://doi.org/10.1007/978-3-031-01689-9
isbn_softcover978-3-031-00561-9
isbn_ebook978-3-031-01689-9Series ISSN 1932-1252 Series E-ISSN 1932-1716
issn_series 1932-1252
copyrightSpringer Nature Switzerland AG 2006
The information of publication is updating

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Book 2006thod that is used to solve boundary-value problems characterized by a partial differential equation and a set of boundary conditions. The geometrical domain of a boundary-value problem is discretized using sub-domain elements, called the finite elements, and the differential equation is applied to a
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Anastasis C. Polycarpoud those who produce and sell food, in the event of a foodborne illness outbreak or contamination event, quickly find the source of the food contamination. However, traditional food traceability systems are facing problems such as many actors in the food production system (including farmers, food pro
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Synthesis Lectures on Computational Electromagneticshttp://image.papertrans.cn/i/image/474353.jpg
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Anastasis C. Polycarpou, Dept. Biological and Agricultural Engineering, Davis, USA (Section: Postharvest Technologies).Prof. Paul Heinemann., Pennsylvania State University, Department Head of Agricultural and Biological Engineering, PA, USA (Section: Technologies for Crop Production).Prof. Manoj Karkee., Washington State
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