Composition Dependence of Equations of State

Composition Dependence of Equations of State
Title Composition Dependence of Equations of State PDF eBook
Author Juan F. Luongo Ortiz
Publisher
Pages 270
Release 1996
Genre Equations of state
ISBN

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Equation of State Composition Dependence

Equation of State Composition Dependence
Title Equation of State Composition Dependence PDF eBook
Author Muhammad Alauddin Khan
Publisher
Pages 334
Release 1989
Genre Chemical equilibrium
ISBN

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Equations of State for Fluids and Fluid Mixtures

Equations of State for Fluids and Fluid Mixtures
Title Equations of State for Fluids and Fluid Mixtures PDF eBook
Author J.V. Sengers
Publisher Elsevier
Pages 455
Release 2000-10-30
Genre Science
ISBN 0080531180

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This book has been prepared under the auspices of Commission I.2 on Thermodynamics of the International Union of Pure and Applied Chemistry (IUPAC). The authors of the 18 chapters are all recognized experts in the field. The book gives an up-to-date presentation of equations of state for fluids and fluid mixtures. All principal approaches for developing equations of state are covered. The theoretical basis and practical use of each type of equation is discussed and the strength and weaknesses of each is addressed. Topics addressed include the virial equation of state, cubic equations and generalized van der Waals equations, perturbation theory, integral equations, corresponding stated and mixing rules. Special attention is also devoted to associating fluids, polydisperse fluids, polymer systems, self-assembled systems, ionic fluids and fluids near critical points.

Multiparameter Equations of State

Multiparameter Equations of State
Title Multiparameter Equations of State PDF eBook
Author Roland Span
Publisher Springer Science & Business Media
Pages 384
Release 2013-06-29
Genre Science
ISBN 3662040921

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As a basis for printed property charts and tables, empirical multiparameter equa tions of state have been the most important source of accurate thermodynamic property data for more than 30 years now. However, due to increasing demands on the accuracy of thermodynamic property data in computerised calculations as well as the availability of appropriate software tools, and the ever increasing computer power, such formulations are nowadays becoming a valuable tool for everyday work. This development has substantially increased the number of scientists, engi neers, and students who are working with empirical multiparameter equations of state, and it continues to do so. Nevertheless, common knowledge on this kind of thermodynamic property models and on the ongoing progress in this scientific discipline is still very limited. Multiparameter equations of state do not belong to the topics which are taught intensively in thermodynamic courses in engineering and natural sciences and the books and articles where they are published mainly deal with the thermodynamic properties of certain substances rather than with the theoretical background of the used equations of state. In contrast to this, my concern mainly was to give a survey of the theoretical background of multiparameter equations of state both with regard to their application and their development.

Thermodynamics

Thermodynamics
Title Thermodynamics PDF eBook
Author J. P. O'Connell
Publisher Cambridge University Press
Pages 680
Release 2005-05-16
Genre Technology & Engineering
ISBN 9781139443173

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Thermodynamics: Fundamentals and Applications is a 2005 text for a first graduate course in Chemical Engineering. The focus is on macroscopic thermodynamics; discussions of modeling and molecular situations are integrated throughout. Underpinning this text is the knowledge that while thermodynamics describes natural phenomena, those descriptions are the products of creative, systematic minds. Nature unfolds without reference to human concepts of energy, entropy, or fugacity. Natural complexity can be organized and studied by thermodynamics methodology. The power of thermodynamics can be used to advantage if the fundamentals are understood. This text's emphasis is on fundamentals rather than modeling. Knowledge of the basics will enhance the ability to combine them with models when applying thermodynamics to practical situations. While the goal of an engineering education is to teach effective problem solving, this text never forgets the delight of discovery, the satisfaction of grasping intricate concepts, and the stimulation of the scholarly atmosphere.

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Title Scientific and Technical Aerospace Reports PDF eBook
Author
Publisher
Pages 562
Release 1992
Genre Aeronautics
ISBN

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Applied Thermodynamics of Fluids

Applied Thermodynamics of Fluids
Title Applied Thermodynamics of Fluids PDF eBook
Author A. R. H. Goodwin
Publisher Royal Society of Chemistry
Pages 535
Release 2010
Genre Science
ISBN 1847558062

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Published under the asspices of both IUPAC and its affiliated body, the International Association of Chemical Thermodynamics (IACT), this book will serve as a guide to scientists or technicians who use equations of state for fluids. Concentrating on the application of theory, the practical use of each type of equation is discussed and the strengths and weaknesses of each are addressed. It includes material on the equations of state for chemically reacting and non-equilibrium fluids which have undergone significant developments and brings up to date the equations of state for fluids and fluid mixtures. Applied Thermodynamics of Fluids addresses the need of practitioners within academia, government and industry by assembling an international team of distinguished experts to provide each chapter. The topics presented in the book are important to the energy business, particularly the hydroncarbon economy and the development of new power sources and are also significant for the application of liquid crystals and ionic liquids to commericial products. This reference will be useful for post graduate researchers in the fields of chemical engineering, mechanical engineering, chemistry and physics.