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Titlebook: Computer Applications in Plasma Science and Engineering; Adam T. Drobot Conference proceedings 1991 Springer-Verlag New York, Inc. 1991 Co

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https://doi.org/10.1007/978-3-642-97356-7rties of the flow, and how elementary concepts in numerical analysis can be applied to the construction of finite difference approximations that capture these features. The linear and nonlinear stability of explicit and implicit differencing in time is examined, the origin and effect of numerical di
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https://doi.org/10.1007/b138769o acquaint the students with the multidisciplinary nature of computational techniques and the breadth of research areas in plasma science in which computation can address important physics and engineering design issues.
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,Physikalische Gr??en und Konstanten,The techniques of the numerical simulation of plasmas can be readily applied to problems in accelerator physics. Because the problems usually involve a single component “plasma,” and times that are at most, a few plasma oscillation periods, it is frequently possible to make very good simulations with relatively modest computation resources.
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The Numerical Simulation of Accelerator Components,The techniques of the numerical simulation of plasmas can be readily applied to problems in accelerator physics. Because the problems usually involve a single component “plasma,” and times that are at most, a few plasma oscillation periods, it is frequently possible to make very good simulations with relatively modest computation resources.
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Conference proceedings 1991e course was to acquaint the students with the multidisciplinary nature of computational techniques and the breadth of research areas in plasma science in which computation can address important physics and engineering design issues. These involve: electric and magnetic fields, MHD equations, chemis
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