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Statistical Mechanics of Liquids and Solutions: Intermolecular Forces, Structure and Surface Interactions Volume I

Autor Roland Kjellander
en Limba Engleză Hardback – 17 sep 2019
The statistical mechanical theory of liquids and solutions is a fundamental area of physical sciences with important implications in other fields of science and for many industrial applications. This book introduces equilibrium statistical mechanics in general, and statistical mechanics of liquids and solutions in particular. A major theme is the intimate relationship between forces in a fluid and the fluid structure – a relationship that is paramount for the understanding of the subject of interactions in dense fluids. Using this microscopic, molecular approach, the text emphasizes clarity of physical explanations for phenomena and mechanisms relevant to fluids, addressing the structure and behavior of liquids and solutions under various conditions. A notable feature is the author’s treatment of forces between particles that include nanoparticles, macroparticles, and surfaces. The book provides an expanded, in-depth treatment of simple liquids and electrolytes in the bulk and in confinement.
  • Provides an introduction to statistical mechanics of liquids and solutions with special attention to structure and interactions.
  • Offers an extensive presentation starting with the basics of statistical mechanics to modern aspects of the theory of liquids and solutions, including intermolecular interactions in fluids.
  • Treats both homogeneous bulk fluids and inhomogeneous fluids near surfaces and in confinement.
  • Takes a microscopic, molecular approach that combines physical transparency, theoretical sharpness and a pedagogical and accessible style.
  • Gives explicit and clear textual explanations and physical interpretations for any mathematical relationships and derivations.
  • Goes deeper than the available texts on interactions in fluids, by taking the discussion beyond simple approximations and mean field approaches.
The book will be an invaluable resource for advanced undergraduate, graduate, and postgraduate students in physics, chemistry, soft matter science, surface and colloid science and related fields, as well as professionals and instructors in those areas of science.
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Specificații

ISBN-13: 9781482244014
ISBN-10: 1482244012
Pagini: 526
Ilustrații: 4 Tables, black and white; 10 Illustrations, color; 75 Illustrations, black and white
Dimensiuni: 178 x 254 x 36 mm
Greutate: 1.08 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press

Notă biografică

Roland Kjellander acquired a master’s degree in chemical engineering, a Ph.D. in physical chemistry, and the title of docent in physical chemistry from the Royal Institute of Technology, Stockholm, Sweden. He is currently a professor emeritus of physical chemistry in the Department of Chemistry and Molecular Biology at the University of Gothenburg, Sweden. His previous appointments include roles in various academic and research capacities at the University of Gothenburg, Sweden; Australian National University, Canberra; Royal Institute of Technology, Stockholm, Sweden; Massachusetts Institute of Technology, Cambridge, USA; and Harvard Medical School, Boston, USA. He was awarded the 2004 Pedagogical Prize from the University of Gothenburg, Sweden, and the 2007 Norblad-Ekstrand Medal from the Swedish Chemical Society. Professor Kjellander’s field of research is statistical mechanics, in particular liquid state theory.

Cuprins

1. Introduction 2. Statistical mechanics from a quantum perspective 3. Classical statistical mechanics 4. Illustrative examples from some classical theories of fluids 5. Interaction potentials and distributions functions 6. Interactions and correlations in simple bulk electrolytes 7. Inhomogeneous and confined simple fluids 8. Surface forces

Descriere

This book shows how you can start from basic laws for the interactions and motions of microscopic particles and calculate how macroscopic systems of these particles behave, thereby explaining properties of matter at the scale that we perceive.