Verlag: Springer Verlag, New York, 1986
ISBN 10: 0387134018 ISBN 13: 9780387134017
Sprache: Englisch
Anbieter: The People's Co-op Bookstore, Vancouver, BC, Kanada
EUR 22,78
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In den WarenkorbHardcover. Zustand: Very Good. 8vo, 6-1/4" x 9-1/2". vii + 199pp. Perfect case bound book in printed orange cloth-covered boards. Light shelf wear to cover; spine somewhat faded, but title &c. remains bright and fully legible. Front end paper improperly glued, and is lifting from the inside of the cover. End paper entirely lacking, an apparent binding flaw. Binding, however, remains sound and tight. Previous owner's name in ink on front free end paper, otherwise pages are clean and bright and unmarked.
Anbieter: Ria Christie Collections, Uxbridge, Vereinigtes Königreich
EUR 59,92
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In den WarenkorbZustand: New. In.
Anbieter: Revaluation Books, Exeter, Vereinigtes Königreich
EUR 77,05
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In den WarenkorbPaperback. Zustand: Brand New. reprint edition. 199 pages. 8.75x6.00x0.50 inches. In Stock.
Verlag: Berlin, Heidelberg, New York, Tokyo: Springer-Verlag, 1986
ISBN 10: 3540134018 ISBN 13: 9783540134015
Anbieter: Kunze, Gernot, Versandantiquariat, Falkensee, Deutschland
Erstausgabe
EUR 20,00
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In den WarenkorbVIII, 199 Seiten, Format 16,5 x 24,2 cm, hartgebundener Original-Pappband. * Zweite ISBN: 0-387-13401-8. Literaturverzeichnis und Index (References + Index) auf den Seiten 194-199. Erhaltung: Am Rücken etwas blasser. Sonst keine weiteren Mängel und insgesamt sehr gut erhalten [Eine größere Sammlung Physik, Mathematik, Astronomie und verwandte Gebiete wird derzeit in den Bestand eingearbeitet. Sie finden diese Titel bei uns in den gleichnamigen Rubriken]. Sprache: Englisch.
Verlag: Springer Berlin Heidelberg, 2012
ISBN 10: 3642859569 ISBN 13: 9783642859564
Sprache: Englisch
Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
EUR 53,49
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In den WarenkorbTaschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - Because magnetically confined plasmas are generally not found in a state of thermodynamic equilibrium, they have been studied extensively with methods of applied kinetic theory. In closed magnetic field line confinement devices such as the tokamak, non-Maxwellian distortions usually occur as a result of auxiliary heating and transport. In magnetic mirror configurations even the intended steady state plasma is far from local thermodynamic equilibrium because of losses along open magnetic field lines. In both of these major fusion devices, kinetic models based on the Boltzmann equation with Fokker-Planck collision terms have been successful in representing plasma behavior. The heating of plasmas by energetic neutral beams or microwaves, the production and thermalization of a-particles in thermonuclear reactor plasmas, the study of runaway electrons in tokamaks, and the performance of two-energy compo nent fusion reactors are some examples of processes in which the solution of kinetic equations is appropriate and, moreover, generally necessary for an understanding of the plasma dynamics. Ultimately, the problem is to solve a nonlinear partial differential equation for the distribution function of each charged plasma species in terms of six phase space variables and time. The dimensionality of the problem may be reduced through imposing certain symmetry conditions. For example, fewer spatial dimensions are needed if either the magnetic field is taken to be uniform or the magnetic field inhomogeneity enters principally through its variation along the direction of the field.