Unified Non-Local Theory of Transport Processes

Generalized Boltzmann Physical Kinetics

Nonfiction, Science & Nature, Science, Physics, Mechanics, Mathematical Physics
Cover of the book Unified Non-Local Theory of Transport Processes by Boris V. Alexeev, Elsevier Science
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Author: Boris V. Alexeev ISBN: 9780444634870
Publisher: Elsevier Science Publication: February 10, 2015
Imprint: Elsevier Language: English
Author: Boris V. Alexeev
ISBN: 9780444634870
Publisher: Elsevier Science
Publication: February 10, 2015
Imprint: Elsevier
Language: English

Unified Non-Local Theory of Transport Processess, 2nd Edition provides a new theory of transport processes in gases, plasmas and liquids. It is shown that the well-known Boltzmann equation, which is the basis of the classical kinetic theory, is incorrect in the definite sense. Additional terms need to be added leading to a dramatic change in transport theory. The result is a strict theory of turbulence and the possibility to calculate turbulent flows from the first principles of physics.

  • 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
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Unified Non-Local Theory of Transport Processess, 2nd Edition provides a new theory of transport processes in gases, plasmas and liquids. It is shown that the well-known Boltzmann equation, which is the basis of the classical kinetic theory, is incorrect in the definite sense. Additional terms need to be added leading to a dramatic change in transport theory. The result is a strict theory of turbulence and the possibility to calculate turbulent flows from the first principles of physics.

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