Chemical Thermodynamics and Statistical Aspects

Chemical Thermodynamics and Statistical Aspects
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Questions to Ask in Fundamentals and Principles
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Artikel-Nr:
9780443152955
Veröffentl:
2023
Erscheinungsdatum:
22.06.2023
Seiten:
720
Autor:
Joseph J Stephanos
Gewicht:
450 g
Format:
277x213x38 mm
Sprache:
Englisch
Beschreibung:

Joseph J. Stephanos is associate professor of inorganic, bioinorganic, biophysics chemistry at Menoufia University. He has been postdoctoral research associate at Pennsylvania University, postdoctoral instructor and adjunct associate professor at Drexel University and has held various teaching positions leading to the current one. Dr. Stephanos' research interests concern inorganic studies of biologically active molecules, studying model compounds, their structure and bonding, and the chemistry of metalloproteins and ligands binding, with special reference to mechanistic aspects and structure/function relation. He is the author and coauthor of several articles and one previous book, Chemistry of Metalloproteins: Problems and Solutions in Bioinorganic Chemistry.
Chemical Thermodynamics and Statistical Aspects: Questions to Ask in Fundamentals and Principles covers a full range of topics in macroscopic and statistical thermodynamics. Every step in the book is compiled with sharp and precise attention to detail. Derivations cover fundamental relationships and reinforce and extend the knowledge gained form an earlier exposure to thermodynamics. The book is filled with all kinds of physics processes, a variety of quantum mechanics, and calculus problems involving timely mathematical functions. Special emphases is given to fundamental concepts and their chemical interpretations, which are essential to understanding molecular formation and reaction mechanism.
1. Thermodynamics variables and fundamentals2. Work, heat, internal energy, and enthalpy3. Entropy of pure substance in single phase 34. Free energy of pure substance in single phase5. Thermodynamics of homogeneous and heterogeneous systems6. Thermodynamics of mixtures7. Activity8. Thermodynamics and chemical processes9. Statistics and particle distributions10. Distribution of independent particles in an isolated system11. Thermodynamic properties of the dilute limit distributions12. Partition function of independent particles13. Energy mode and thermodynamic probabilities14. Thermodynamic properties of ideal gases15. Thermodynamic properties of ideal gas mixtures16. Thermodynamic properties of solids17. Canonical ensemble18. Microcanonical and grand canonical ensembles

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