Unified Non-Local Theory of Transport Processes: Generalized Boltzmann Physical Kinetics
Autor Boris V. Alexeeven Limba Engleză Hardback – 5 feb 2015
- Fully revised and expanded edition, providing applications in quantum non-local hydrodynamics, quantum solitons in solid matter, and plasmas
- Uses generalized Boltzmann kinetic theory as an highly effective tool for solving many physical problems beyond classical physics
- Addresses dark matter and energy
- Presents non-local physics in many related problems of hydrodynamics, gravity, black holes, nonlinear optics, and applied mathematics
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Specificații
ISBN-13: 9780444634788
ISBN-10: 0444634789
Pagini: 644
Dimensiuni: 216 x 276 x 38 mm
Greutate: 2.02 kg
Ediția:Revised
Editura: ELSEVIER SCIENCE
ISBN-10: 0444634789
Pagini: 644
Dimensiuni: 216 x 276 x 38 mm
Greutate: 2.02 kg
Ediția:Revised
Editura: ELSEVIER SCIENCE
Public țintă
Theoretical and applied physicists, astrophysicists, astronomers, cosmologists, engineersCuprins
PrefaceHistorical Introduction and the Problem FormulationChapter 1: Generalized Boltzmann EquationChapter 2: Theory of Generalized Hydrodynamic EquationsChapter 3: Quantum Non-Local HydrodynamicsChapter 4: Application of Unified Non-Local Theory to the Calculation of the Electronc and Proton Inner StructuresChapter 5: Non-Local Quantum Hydrodynamics in the Theory of Plasmoids and the Atom StructureChapter 6: Quantum Solitons in Solid MatterChapter 7: Generalized Boltzmann Physical Kinetics in Physics of PlasmaChapter 8: Physics of a Weakly Ionized GasChapter 9: Generalized Boltzmann Equation in the Theory of the Rarefied Gases and LiquidsChapter 10: Strict Theory of Turbulence and Some Applications of the Generalized Hydrodynamic TheoryChapter 11: Astrophysical ApplicationsChapter 12: The Generalized Relativistic Kinetic and Hydrodynamic TheoryAppendix 1: Perturbation Method of the Equation SolutionAppendix 2: Using of Curvilinear Coordinates in the Generalized Hydrodynamic TheoryAppendix 3: Characteristic Scales in Plasma PhysicsAppendix 4: Dispersion Relations in the Generalized Boltzmann Kinetic Thoery Neglecting the Integral Collision TermAppendix 5: Three-Diagonal Method of Gauss Elimination Techniques for the Differential Third and Second Order EquationsAppendix 6: Some Integral Calculations in the Generalized Navier - Stokes ApproximationAppendix 7: Derivation of Energy Equation ReferencesIndex
Recenzii
"...contains a lot of illustrations and calculations supplied with the detailed discussions of the used approximations, their precision, parameters, etc. It is especially important within the first part of the book, where the method is introduced since these items allow for studying of the topic by newcomers." --Zentralblatt MATH