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Plasma physics and controlled nuclear fusion par Miyamoto, Kenro. Publication : [S.l.] Springer 2010 . 372 p. , The primary objectives of this book are, firstly, to present the essential theoretical background needed to understand recent fusion research and, secondly, to describe the current status of fusion research for graduate students and senior undergraduates. It will also serve as a useful reference for scientists and engineers working in the related fields. In Part I, Plasma Physics, the author explains the basics of magneto-hydrodynamics and kinetic theory in a simple and compact way and, at the same time, covers important new topics for fusion studies such as the ballooning representation, instabilities driven by energetic particles, and various plasma models for computer simulations. Part II, Controlled Nuclear Fusion, attempts to review the "big picture" in fusion research. Mathematical derivations are comprehensively explained to better enable readers to later concentrate on the physics. All important phenomena and technologies are addressed, with a particular emphasis on the topics of most concern in current research. 24 cm. Date : 2010 Disponibilité : Exemplaires disponibles: La bibliothèque des sciences de l'ingénieur (1),

Thermodynamics, gibbs method and statistical physics of electron gases par Askerov, Bahram M. Publication : [S.l.] Springer 2010 . 374 p. , This book deals with theoretical thermodynamics and the statistical physics of electron and particle gases. While treating the laws of thermodynamics from both classical and quantum theoretical viewpoints, it posits that the basis of the statistical theory of macroscopic properties of a system is the microcanonical distribution of isolated systems, from which all canonical distributions stem. To calculate the free energy, the Gibbs method is applied to ideal and non-ideal gases, and also to a crystalline solid. Considerable attention is paid to the Fermi-Dirac and Bose-Einstein quantum statistics and its application to different quantum gases, and electron gas in both metals and semiconductors is considered in a nonequilibrium state.�A separate chapter treats the statistical theory of thermodynamic properties of an electron gas in a quantizing magnetic field. 24 cm. Date : 2010 Disponibilité : Exemplaires disponibles: La bibliothèque des Sciences Exactes et Naturelles (1),

Fundamental Aspects of Plasma Chemical Physics Transport / par Capitelli, Mario. Publication : . XVIII, 352 p. Disponibilité :  http://dx.doi.org/10.1007/978-1-4419-8172-1,

Statistical Physics of Nanoparticles in the Gas Phase par Hansen, Klavs. Publication : . XII, 284 p. Disponibilité :  http://dx.doi.org/10.1007/978-94-007-5839-1,

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