Statistical Mechanics of Liquids and Solutions: Intermolecular Forces, Structure and Surface Interactions (1)
Statistical Mechanics of Liquids and Solutions: Intermolecular Forces, Structure and Surface Interactions (1) is backordered and will ship as soon as it is back in stock.
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Book Details
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Author: Roland Kjellander
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Publisher: CRC Press
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Edition: 1st Edition
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Binding: Paperback
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Number of Pages: 546
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ISBN: 9780367477905
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Languages: English
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Dimensions: 11.4 x 7.0 x 1.3 inches
About The Book
The Statistical Mechanics of Liquids and Solutions is an essential resource for understanding the intricate world of fluid behavior, providing invaluable insights into the statistical mechanical theory of liquids and solutions. This book takes a deep dive into equilibrium statistical mechanics, with a focus on the relationships between forces within fluids and their structures. These concepts are vital for comprehending the interactions within dense fluids, and they hold significance across multiple scientific and industrial domains.
The author, Roland Kjellander, offers a thorough examination of the topic by emphasizing the microscopic molecular approach. His writing seamlessly combines physical clarity with theoretical precision, ensuring a pedagogical yet accessible style for students and professionals alike. The book covers a range of essential concepts, starting from the fundamentals of statistical mechanics and expanding into more modern theories about intermolecular interactions in liquids and solutions.
This book is particularly distinguished by its exploration of both homogeneous bulk fluids and inhomogeneous fluids, especially those near surfaces or in confined spaces. A special emphasis is placed on particle interactions, including those involving nanoparticles, macroparticles, and surfaces.
An advanced text designed for students and professionals in the fields of physics, chemistry, soft matter science, surface science, and colloid science, this book provides a deeper understanding of fluid interactions beyond basic approximations and mean-field theories. It’s an indispensable resource for those wishing to explore the fundamental principles governing the behavior of liquids and solutions under a variety of conditions.

