img Leseprobe Leseprobe

Lectures on the Mechanical Foundations of Thermodynamics

Michele Campisi

PDF
ca. 69,54
Amazon iTunes Thalia.de Weltbild.de Hugendubel Bücher.de ebook.de kobo Osiander Google Books Barnes&Noble bol.com Legimi yourbook.shop Kulturkaufhaus ebooks-center.de
* Affiliatelinks/Werbelinks
Hinweis: Affiliatelinks/Werbelinks
Links auf reinlesen.de sind sogenannte Affiliate-Links. Wenn du auf so einen Affiliate-Link klickst und über diesen Link einkaufst, bekommt reinlesen.de von dem betreffenden Online-Shop oder Anbieter eine Provision. Für dich verändert sich der Preis nicht.

Springer International Publishing img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Thermodynamik

Beschreibung

This brief provides a modern pedagogical exposition of the mechanical approach to statistical mechanics initiated by Boltzmann with his early works (1866-1871). Despite the later contribution by Helmholtz, Boltzmann himself (1884-1887), Gibbs, P. Hertz, and Einstein, the mechanical approach remained almost unknown to the modern reader, in favour of the celebrated combinatorial approach, developed by Boltzmann himself during his probabilistic turn (1876-1884). The brief constitutes an ideal continuation of a graduate course of classical mechanics and requires knowledge of basic calculus in many dimension (including differential forms), thermodynamics, probability theory, besides Hamiltonian mechanics. The cornerstone of the whole presentation is the ergodic hypothesis. Special attention is devoted to Massieu potentials (the Legendre transforms of the entropy) which are most natural in statistical mechanics, and also allow for a more direct treatment of the topic of ensemble equivalence.

Weitere Titel in dieser Kategorie
Cover Dark Matter
David Ellis
Cover Diffusionics
Ji-Ping Huang
Cover UMAG
Vincent Stephen Hyatt
Cover Superfluid
J. G. Weisend II

Kundenbewertungen

Schlagwörter

Finite bath fluctuatio theorem, Generalized Helmholtz theorem (GHT), Logarithmic oscillators, Equilibrium thermostatics and irreversible thermodynamics, Topological conditions for discrete symmetry breaking, Power-laws in equilibrium, Nonanalytic microscopic phase transitions