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|a 10.1088/978-0-7503-2360-4
|2 doi
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|a (CaBNVSL)thg00082214
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|a (OCoLC)1231598967
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|a 537.53015118
|2 23
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|a Rafatov, Ismail,
|e author.
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|a Introduction to simulation methods for gas discharge plasmas :
|b accuracy, reliability and limitations /
|c Ismail Rafatov, Anatoly Kudryavtsev.
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|a Bristol [England] (Temple Circus, Temple Way, Bristol BS1 6HG, UK) :
|b IOP Publishing,
|c [2020]
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|a 1 online resource (various pagings) :
|b illustrations (some color).
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|a text
|2 rdacontent
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|a electronic
|2 isbdmedia
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|a online resource
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|a IOP ebooks. [2020 collection]
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|a "Version: 20201201"--Title page verso.
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|a Includes bibliographical references.
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|a 1. Modeling approaches for gas discharge plasmas -- 1.1. Introduction -- 1.2. Boltzmann kinetic equation and derivation of balance equations for the density, momentum, and energy of plasma particles -- 1.3. Two-fluid equations for plasma -- 1.4. Fluid equations of plasma in drift-diffusion approximation -- 1.5. Limitations and applicability of the fluid model
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|a 2. Numerical simulation of gas discharges : fluid, particle, and hybrid methods -- 2.1. Preliminary technique -- 2.2. Finite volume method (FVM) for convection-diffusion equation -- 2.3. Fluid models for gas discharge -- 2.4. PIC/MCC method for simulation of gas discharges -- 2.5. Hybrid MC-fluid modeling of gas discharges
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|a 3. Numerical analysis of non-linear dynamics and transition to chaos in a gas discharge-semiconductor system -- 3.1. Model -- 3.2. Non-linear oscillations and transition to chaos in a gas discharge-semiconductor system -- 3.3. Pattern formation in the gas discharge-semiconductor system.
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|a Gas discharge plasma is the most common type of low-temperature plasma, with a large number of practical applications covering almost all areas of modern science and technology. This book is an introduction to the numerical modeling methods for gas discharge plasmas. It is intended to assist and direct graduate students and junior researchers, whose research activity deals with computational plasma physics. Topics covered include the essentials of basic modeling approaches (particle, fluid, and hybrid) for gas discharges, and the implementation of these methods with examples of glow (DC and RF) discharges. Numerical studies of nonlinear dynamics and formation of spatio-temporal patterns in gas discharge systems are also presented.
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|a Graduate students and researchers dealing with the gas discharge modelling.
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|a Also available in print.
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|a Mode of access: World Wide Web.
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|a System requirements: Adobe Acrobat Reader, EPUB reader, or Kindle reader.
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|a Ismail Rafatov obtained his PhD at the KRSU (Bishkek, Kirghizia) in 1999. Since 2004 he has been working at the Department of Physics of the Middle East Technical University (Ankara, Turkey), and is currently Professor of this department. His research interests encompass computational plasma physics, nonlinear dynamics and chaos, and nonequilibrium pattern formation. Anatoly Kudryavtsev received his MS and PhD degrees in physics from the Leningrad State University, USSR (currently, Saint Petersburg State University, Russia), in 1976 and 1983, respectively. Since 1982 he has held the positions of junior researcher, senior researcher, and Associate Professor at the Department of Optics of this University. He is an expert in the physics of gas discharge plasma, and has published more than 150 papers and several monographs on the probe technique for plasma diagnostics and the physics of gas discharges.
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|a Title from PDF title page (viewed on January 14, 2021).
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|a Glow discharges
|x Mathematical models.
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|a Atomic & molecular physics.
|2 bicssc
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|a SCIENCE / Physics / Atomic & Molecular.
|2 bisacsh
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|a Kudryavtsev, Anatoly A.,
|e author.
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|a Institute of Physics (Great Britain),
|e publisher.
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|i Print version:
|z 9780750323581
|z 9780750323611
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|a IOP ebooks.
|p 2020 collection.
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|u https://iopscience.uam.elogim.com/book/978-0-7503-2360-4
|z Texto completo
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