Partition Functions and Thermodynamic Properties to High Temperatures for H+3 and H+2
Author: R. W. Patch
Publisher:
Published: 1968
Total Pages: 84
ISBN-13:
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Author: R. W. Patch
Publisher:
Published: 1968
Total Pages: 84
ISBN-13:
DOWNLOAD EBOOKAuthor: Robert F. Kubin
Publisher:
Published: 1964
Total Pages: 78
ISBN-13:
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Publisher:
Published: 1973
Total Pages: 1132
ISBN-13:
DOWNLOAD EBOOKAuthor: Robert F. Kubin
Publisher:
Published: 1964
Total Pages: 80
ISBN-13:
DOWNLOAD EBOOKAuthor: John W. Hastie
Publisher:
Published: 1979
Total Pages: 936
ISBN-13:
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Publisher:
Published: 1971
Total Pages: 1330
ISBN-13:
DOWNLOAD EBOOKAuthor: Mario Capitelli
Publisher: Springer Science & Business Media
Published: 2011-12-02
Total Pages: 318
ISBN-13: 1441981829
DOWNLOAD EBOOKFundamental Aspects of Plasma Chemical Physics - Thermodynamics develops basic and advanced concepts of plasma thermodynamics from both classical and statistical points of view. After a refreshment of classical thermodynamics applied to the dissociation and ionization regimes, the book invites the reader to discover the role of electronic excitation in affecting the properties of plasmas, a topic often overlooked by the thermal plasma community. Particular attention is devoted to the problem of the divergence of the partition function of atomic species and the state-to-state approach for calculating the partition function of diatomic and polyatomic molecules. The limit of ideal gas approximation is also discussed, by introducing Debye-Huckel and virial corrections. Throughout the book, worked examples are given in order to clarify concepts and mathematical approaches. This book is a first of a series of three books to be published by the authors on fundamental aspects of plasma chemical physics. The next books will discuss transport and kinetics.
Author: N. L. Krascella
Publisher:
Published: 1963
Total Pages: 196
ISBN-13:
DOWNLOAD EBOOKAuthor: Maher I. Boulos
Publisher: Springer Nature
Published: 2023-02-20
Total Pages: 1973
ISBN-13: 3030849368
DOWNLOAD EBOOKThis authoritative reference presents a comprehensive review of the evolution of plasma science and technology fundamentals over the past five decades. One of this field’s principal challenges has been its multidisciplinary nature requiring coverage of fundamental plasma physics in plasma generation, transport phenomena under high-temperature conditions, involving momentum, heat and mass transfer, and high-temperature reaction kinetics, as well as fundamentals of material science under extreme conditions. The book is structured in five distinct parts, which are presented in a reader-friendly format allowing for detailed coverage of the science base and engineering aspects of the technology including plasma generation, mathematical modeling, diagnostics, and industrial applications of thermal plasma technology. This book is an essential resource for practicing engineers, research scientists, and graduate students working in the field.