Quantum Statistics of Dense Gases and Nonideal Plasmas Quantum Statistics of Dense Gases and Nonideal Plasmas
Springer Series in Plasma Science and Technology

Quantum Statistics of Dense Gases and Nonideal Plasmas

Werner Ebeling and Others
    • 97,99 €
    • 97,99 €

Publisher Description

The aim of this book is the pedagogical exploration of the basic principles of quantum-statistical thermodynamics as applied to various states of matter – ranging from rare gases to astrophysical matter with high-energy density. The reader will learn in this work that thermodynamics and quantum statistics are still the concepts on which even the most advanced research is operating - despite of a flood of modern concepts, classical entities like temperature, pressure, energy and entropy are shown to remain fundamental.

The physics of gases, plasmas and high-energy density matter is still a growing field and even though solids and liquids dominate our daily life, more than 99 percent of the visible Universe is in the state of gases and plasmas and the overwhelming part of matter exists at extreme conditions connected with very large energy densities, such as in the interior of stars.

This text, combining material from lectures and advanced seminars given by the authorsover many decades, is a must-have introduction and reference for both newcomers and seasoned researchers alike.

GENRE
Science & Nature
RELEASED
2017
27 November
LANGUAGE
EN
English
LENGTH
577
Pages
PUBLISHER
Springer International Publishing
SIZE
12.2
MB

More Books by Werner Ebeling, Vladimir E. Fortov & Vladimir Filinov

Lectures on Quantum Statistics Lectures on Quantum Statistics
2019
Physics of Self-Organization and Evolution Physics of Self-Organization and Evolution
2011

Other Books in This Series

The Physics of Laser Plasmas and Applications - Volume 2 The Physics of Laser Plasmas and Applications - Volume 2
2024
Pulsed Discharge Plasmas Pulsed Discharge Plasmas
2023
Computational Plasma Science Computational Plasma Science
2023
High-Density Helicon Plasma Science High-Density Helicon Plasma Science
2023
Systems Approaches to Nuclear Fusion Reactors Systems Approaches to Nuclear Fusion Reactors
2023
Plasma-Material Interactions in a Controlled Fusion Reactor Plasma-Material Interactions in a Controlled Fusion Reactor
2021