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Grotberg

Biofluid Mechanics

Medium: Buch
ISBN: 978-1-107-00311-8
Verlag: Cambridge University Press
Erscheinungstermin: 30.09.2021
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Condensing 40 years of teaching experience, this unique textbook will provide students with an unrivalled understanding of the fundamentals of fluid mechanics, and enable them to place that understanding firmly within a biological context. Each chapter introduces, explains, and expands a core concept in biofluid mechanics, establishing a firm theoretical framework for students to build upon in further study. Practical biofluid applications, clinical correlations, and worked examples throughout the book provide real-world scenarios to help students quickly master key theoretical topics. Examples are drawn from biology, medicine, and biotechnology with applications to normal function, disease, and devices, accompanied by over 500 figures to reinforce student understanding. Featuring over 120 multicomponent end-of-chapter problems, flexible teaching pathways to enable tailor-made course structures, and extensive Matlab and Maple code examples, this is the definitive textbook for advanced undergraduate and graduate students studying a biologically-grounded course in fluid mechanics.

Produkteigenschaften


  • Artikelnummer: 9781107003118
  • Medium: Buch
  • ISBN: 978-1-107-00311-8
  • Verlag: Cambridge University Press
  • Erscheinungstermin: 30.09.2021
  • Sprache(n): Englisch
  • Auflage: Erscheinungsjahr 2021
  • Serie: Cambridge Texts in Biomedical Engineering
  • Produktform: Gebunden
  • Gewicht: 1448 g
  • Seiten: 600
  • Format (B x H x T): 192 x 250 x 32 mm
  • Ausgabetyp: Kein, Unbekannt

Autoren/Hrsg.

Autoren

Grotberg, James B

James B. Grotberg is a PhD and MD Professor of Biomedical Engineering, and a Professor in the Department of Surgery, at the University of Michigan, with many years of research, teaching and clinical experience focused on biofluid mechanics. He is a Fellow of the American Physical Society, a Fellow of the American Institute for Medical and Biological Engineering, an Inaugural Fellow of the Biomedical Engineering Society, and a Fellow of the American Society of Mechanical Engineers.

Table of Contents; Preface; 1. Introduction to Biofluid Mechanics; 2. Scalings, Parameters, and Variables; 3. Kinematics, Lagrangian and Eulerian Variables; 4. Conservation of Mass; 5. Conservation of Momentum; 6. Constitutive Equations 1: Inviscid and Newtonian Viscous Fluids; 7. Steady Newtonian Viscous Flow; 8. Unsteady Newtonian Viscous Flow; 9. Flow in Flexible Tubes; 10. Constitutive Equations 2: Generalised Newtonian Fluids; 11. Lubrication Theory; 12. Laminar Boundary Layers; 13. Turbulence; 14. Constitutive Equations 3: Viscoelastic Fluids; 15. Porous Media; 16. Interfacial Phenomena; 17. Perturbation Methods; Index.