Title
Microhydrodynamics: Principles and Selected Applications,Used
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This book is well organized and comprehensive . . . an eloquent and enduring statement of significant hydrodynamic principles.' AIChE JournalMicrohydrodynamics concerns the flow and related phenomena pertinent to the motion of small particles suspended in viscous fluids. This text focuses on determining the motion of a particle or particles through a viscous fluid in bounded and unbounded flow. Its central theme is the mobility relation between particle motion and forces.Microhydrodynamics: Principles and Selected Applications functions as a manual that explains methods for solving particulate flows at lowReynolds number, from analytical to computational methods. The everincreasing growth in computational power has resulted in a similar growth in the range of solvable problems in microhydrodynamics. Suitable for graduate students in engineering and applied mathematics, this text treats the mathematical foundations and highlights the interplay of both mathematical and physical insights, guiding readers through single particle theory and problems related to multiparticle analyses.
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- Q: What is the page count of this book? A: This book has five hundred forty-four pages. It provides a comprehensive exploration of microhydrodynamics principles and applications.
- Q: What is the binding type of 'Microhydrodynamics: Principles and Selected Applications'? A: The book is available in paperback binding. This format is popular for its durability and ease of handling.
- Q: What are the dimensions of the book? A: The book measures six point four two inches in length, one point zero eight inches in width, and nine point two one inches in height. These dimensions make it a manageable size for reading and reference.
- Q: What is the main focus of this book? A: The main focus is on the flow of small particles in viscous fluids. It covers the motion of particles in both bounded and unbounded flow.
- Q: Who is the author of this book? A: The author is Sangtae Kim. He is known for his expertise in fluid dynamics and related fields.
- Q: What is the target audience for this book? A: This book is suitable for graduate students in engineering and applied mathematics. It provides essential mathematical foundations related to microhydrodynamics.
- Q: What methods does the book explain? A: The book explains methods for solving particulate flows at low-Reynolds number. It covers both analytical and computational techniques.
- Q: Is this book suitable for beginners in fluid dynamics? A: No, this book is primarily aimed at graduate students and those with a background in engineering. It assumes prior knowledge of mathematical principles.
- Q: What kind of insights does this book provide? A: The book highlights the interplay between mathematical and physical insights in fluid dynamics. It guides readers through both single particle theory and multiparticle analyses.
- Q: How does the book approach the topic of microhydrodynamics? A: The book approaches microhydrodynamics through a comprehensive and systematic examination of key principles. It includes practical applications and theoretical insights.
- Q: What are the key themes of the book? A: Key themes include particle mobility, hydrodynamic principles, and the relationship between forces and particle motion. These themes are central to understanding microhydrodynamics.
- Q: Can this book help with computational fluid dynamics? A: Yes, the book addresses the growth in computational power and its impact on solving problems in microhydrodynamics. It covers relevant computational methods.
- Q: Is there any specific application discussed in this book? A: Yes, the book discusses selected applications of microhydrodynamics, providing context for the principles covered. This includes practical scenarios for fluid dynamics.
- Q: What is the publisher of this book? A: The publisher is Dover Publications. They are known for producing high-quality academic texts.
- Q: Does the book include examples or case studies? A: Yes, the book includes examples and case studies that illustrate the principles of microhydrodynamics in real-world applications. This enhances understanding for readers.