Description: Transport Phenomena in Biological Systems by Fan Yuan, George Truskey, David Katz Presenting engineering fundamentals and biological applications in a unified way, this book provides learners with the skills necessary to develop and critically analyze models of biological transport and reaction processes. It covers topics in fluid mechanics, mass transport, and biochemical interactions, with engineering concepts motivated by specific biological problems. For researchers in biomedical engineering. FORMAT Hardcover LANGUAGE English CONDITION Brand New Publisher Description For one-semester, advanced undergraduate/graduate courses in Biotransport Engineering. Presenting engineering fundamentals and biological applications in a unified way, this text provides students with the skills necessary to develop and critically analyze models of biological transport and reaction processes. It covers topics in fluid mechanics, mass transport, and biochemical interactions, with engineering concepts motivated by specific biological problems. Back Cover The efficient transport of molecules is essential for the normal function of cells and organs and the design of devices for medical applications and biotechnology. Transport Phenomena in Biological Systems provides an introduction to the integrated study of transport processes and their biological applications. The book consists of four sections, which cover physiological fluid mechanics, mass transport, biochemical interactions and reactions and the effect of mass transfer, and transport in organs and whole organisms. In order to provide students with a firm understanding of biological transport processes, engineering concepts are provided within the context of specific biological problems. Examples and problems elaborate on the concepts in the text or develop new concepts. The introductory chapter presents a brief overview of transport processes at the cell and tissue level and relevant concepts in cell biology and physiology are presented throughout the text. An appendix provides an overview of relevant mathematical concepts used in the text. The problems at the end of each chapter require either analytical solution or numerical solution using MATLAB Author Biography The authors are faculty members in the Department of Biomedical Engineering at Duke University. The authors are leaders in their respective fields of research and their research has involved various aspects of momentum and mass transport related to biological phenomena and technologies. Table of Contents Previous Edition TOC 1. Introduction. A. INTRODUCTION TO PHYSIOLOGICAL FLUID MECHANICS. 2. Conservation and Momentum Balances. 3. Conservation Relations for Fluid Transport, Dimensional Analysis and Scaling. 4. Macroscopic Form of Conservation Relations and Applications of Momentum Transport. 5. Fluid Flow in the Circulation and Tissues. B. FUNDAMENTALS AND APPLICATIONS OF MASS TRANSPORT. 6. Introduction to Mass Transport. 7. Diffusion with Convection or Electrical Potentials. 8. Transport in Porous Media. 9. Transvascular Transport. 10. Solvent and Solute Transport across the Kidney Glomerulus. C. THE EFFECT OF MASS TRANSPORT UPON BIOCHEMICAL INTERACTIONS. 11. Mass Transport and Biochemical Interactions. 12. Oxygen Transport from the Lungs to the Tissues. 13. Ligand-Receptor Kinetics on the Cell Surface and Molecular Transport within Cells. 14. Cell Adhesion and Cell Signaling. 15. Transport of Drugs and Macromolecules in Tumors. 16. Transport in Organs and Organisms. 17. Heat Transfer in Biological Systems. Appendix. Relevant Mathematical Concepts. Long Description For one-semester, advanced undergraduate/graduate courses in Biotransport Engineering. Presenting engineering fundamentals and biological applications in a unified way, this text provides students with the skills necessary to develop and critically analyze models of biological transport and reaction processes. It covers topics in fluid mechanics, mass transport, and biochemical interactions, with engineering concepts motivated by specific biological problems. Feature Details A print text Free shipping New Feature * A new chapter on Bioheat Transfer (Chapter 17) to address the growing need for information on this topic. * Approximately 25% new problems , as well as 20% problems revised from the previous edition. * Clarification of essential concepts based on feedback from students and instructors. * Content and writing style streamlined throughout for enhanced readability. Details ISBN0131569880 Author David Katz Short Title TRANSPORT PHENOMENA IN BIOL-2E Series Pearson Prentice Hall Bioengineering Language English Edition 2nd ISBN-10 0131569880 ISBN-13 9780131569881 Media Book Format Hardcover DEWEY 571.64 Illustrations Yes Year 2009 Place of Publication Upper Saddle River Country of Publication United States Replaces 9780130422040 DOI 10.1604/9780131569881 Replaced by 9780134634050 Imprint Pearson AU Release Date 2009-07-02 NZ Release Date 2009-07-02 UK Release Date 2009-07-02 Pages 888 Publisher Pearson Education (US) Edition Description 2nd edition Publication Date 2009-07-09 Audience Tertiary & Higher Education US Release Date 2009-07-09 We've got this At The Nile, if you're looking for it, we've got it. With fast shipping, low prices, friendly service and well over a million items - you're bound to find what you want, at a price you'll love! TheNile_Item_ID:21054895;
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ISBN-13: 9780131569881
Book Title: Transport Phenomena in Biological Systems
Number of Pages: 888 Pages
Language: English
Publication Name: Transport Phenomena in Biological Systems
Publisher: Pearson Education (Us)
Publication Year: 2009
Item Height: 100 mm
Item Weight: 100 g
Type: Textbook
Author: George Truskey, David Katz, Fan Yuan
Subject Area: Chemical Engineering
Item Width: 100 mm
Format: Hardcover