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The Corresponding-States Principle and its Practice: Thermodynamic, Transport and Surface Properties of Fluids

Autor Hong Wei Xiang
en Limba Engleză Hardback – 25 iul 2005
The corresponding-states principle helps the understanding and calculating of thermodynamic, transport, and surface properties of substances in various states, required by our modern lifestyle. The Corresponding-States Principle and its Practice: Thermodynamic, Transport and Surface Properties of Fluids describes the origins and applications of the principle from a universal point of view with comparisons to experimental data where possible. It uses the universal theory to explain present theories. Emphasis is on the properties of pure systems, and the corresponding-states theory can also be extended to mixtures, which are treated as pure systems. Furthermore, the author discusses current progress, and shows technicians how to derive practical equations from molecular modeling. The Corresponding-States Principle and its Practice: Thermodynamic, Transport and Surface Properties of Fluids is the ideal handbook for those in chemical science and engineering related to energy, environment, natural gas, and petroleum.

* Describes the origins and applications from a universal viewpoint* Includes experimental data for comparisons * Suitable for researchers, applied engineers, and those interested in the corresponding states theory
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Specificații

ISBN-13: 9780444520623
ISBN-10: 0444520627
Pagini: 248
Ilustrații: 1
Dimensiuni: 165 x 240 x 15 mm
Greutate: 0.69 kg
Editura: ELSEVIER SCIENCE

Public țintă

Graduate students, applied engineers, consultants and research scientists

Cuprins

1. Introduction 2. The Corresponding-States Principle from the Continuity of Vapor and Liquid States3. Theoretical Basis of the Corresponding-States Principle 4. The Corresponding-States Parameters 5. Thermodynamic Properties6. Vapor Pressures 7. Transport Properties8. Surface Tension

Recenzii

"This book is highly recommended to our profession in applied fields of petroleum, natural gas, and environmental science and engineering, and the fundamental fields of molecular-based study of fluids and phase transitions included highly nonspherical molecules into the corresponding-states frame with about one order of magnitude more accurate than that of Pitzer et al. for heavy hydrocarbon, polar, associating, and hydro-bonding molecules, and provided a new way to understand the behavior of properties of nonspherical molecules" --Journal of Petroleum Science and Engineering, December 2004