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James B.Grotberg

Biofluid Mechanics: Analysis and Applications

Biofluid Mechanics: Analysis and Applications

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This textbook is a comprehensive guide to fluid mechanics, covering biological applications and providing real-world scenarios with over 500 figures and code examples. It is ideal for advanced undergraduate and graduate students studying a biologically-grounded course in fluid mechanics.

Format: Hardback
Length: 600 pages
Publication date: 22 July 2021
Publisher: Cambridge University Press


This groundbreaking textbook, drawing on four decades of teaching expertise, offers students an unparalleled grasp of the core principles of fluid mechanics, placing them firmly within a biological framework. Each chapter introduces, elucidates, and expands upon a fundamental concept in biofluid mechanics, providing a solid theoretical foundation for students to build upon in their future studies. Throughout the book, practical biofluid applications, clinical correlations, and worked examples serve to contextualize theoretical concepts and facilitate a swift mastery of key topics. Examples are drawn from the fields of biology, medicine, and biotechnology, with applications spanning from normal function to disease and device-related scenarios. Accompanied by over 500 figures to enhance student understanding, this textbook serves as the definitive resource for advanced undergraduate and graduate students enrolled in a biologically-grounded course in fluid mechanics.

The text is organized into several chapters, each dedicated to a specific aspect of biofluid mechanics. The introductory chapter provides an overview of the field, highlighting its importance in understanding biological processes. Subsequent chapters delve into key concepts such as fluid dynamics, hydrodynamics, and transport phenomena in biological systems. Each chapter begins with a clear statement of the chapter's objectives, followed by an explanation of the relevant theoretical principles. Practical examples and case studies are used to illustrate the theoretical concepts and demonstrate their applications in real-world scenarios.

Throughout the book, extensive use of figures and diagrams helps to clarify complex concepts and enhance student understanding. These visual aids include schematic representations, flow charts, and photographs of biological structures and processes. Additionally, over 120 multicomponent end-of-chapter problems are provided, allowing students to apply their knowledge and test their understanding of the material. These problems cover a wide range of topics, from basic fluid mechanics to more advanced applications in biofluid mechanics.

Flexible teaching pathways are offered to accommodate different course structures and teaching preferences. The textbook can be used as a standalone resource for self-study or as a textbook for an undergraduate or graduate course in biofluid mechanics. It also serves as a valuable reference for researchers and professionals working in the field.

In addition to the theoretical content, the textbook includes extensive Matlab and Maple code examples. These code examples demonstrate how to implement and analyze the theoretical concepts discussed in the book, providing students with hands-on experience in computational fluid dynamics.

Overall, this textbook is an essential resource for advanced undergraduate and graduate students studying a biologically-grounded course in fluid mechanics. Its comprehensive coverage of the field, practical applications, and extensive use of figures and code examples make it an invaluable tool for anyone seeking to gain a deeper understanding of biofluid mechanics and its applications in biology and medicine.

Weight: 1540g
Dimension: 196 x 253 x 33 (mm)
ISBN-13: 9781107003118

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