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Free PDF Research Methods in Biomechanics

Free PDF Research Methods in Biomechanics

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Research Methods in Biomechanics

Research Methods in Biomechanics


Research Methods in Biomechanics


Free PDF Research Methods in Biomechanics

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Research Methods in Biomechanics

Review

"From how to understand and build concepts to new chapters on new techniques and research in the works, this provides a fine college-level analysis of the math and data collection systems behind biomechanics, and makes for a fine reference for any research interested in analyzing human movement." -- Midwest Book Review

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About the Author

D. Gordon E. Robertson, PhD, an emeritus professor and a fellow of the Canadian Society for Biomechanics, wrote Introduction to Biomechanics for Human Motion Analysis. He taught undergraduate- and graduate-level biomechanics at the University of Ottawa and previously at the University of British Columbia, Canada. He conducts research on human locomotion and athletic activities and authors the analogue data analysis software BioProc3. Graham E. Caldwell, PhD, an associate professor and a fellow of the Canadian Society for Biomechanics, teaches undergraduate- and graduate-level biomechanics at the University of Massachusetts at Amherst and previously held a similar faculty position at the University of Maryland. He won the Canadian Society for Biomechanics New Investigator Award and in 1998 won the Outstanding Teacher Award for the School of Public Health and Health Sciences at the University of Massachusetts at Amherst. He served as an associate editor for Medicine and Science in Sports and Exercise. Joseph Hamill, PhD, is a professor and fellow of the Research Consortium, International Society of Biomechanics in Sports, Canadian Society for Biomechanics, American College of Sports Medicine, and National Academy of Kinesiology. He coauthored the popular undergraduate textbook Biomechanical Basis of Human Movement. He teaches undergraduate- and graduate-level biomechanics and is director of the Biomechanics Laboratory at the University of Massachusetts at Amherst. He serves on the editorial boards of several prestigious professional journals. He is adjunct professor at the University of Edinburgh in Scotland and the University of Limerick in Ireland and a distinguished research professor at Republic Polytechnic in Singapore. Gary Kamen, PhD, is a professor and fellow of the American Alliance for Health, Physical Education, Recreation and Dance; American College of Sports Medicine; and National Academy of Kinesiology. He authored an undergraduate textbook on kinesiology, Foundations of Exercise Science, as well as a primer on electromyography, Essentials of Electromyography. He was president of the Research Consortium of AAPHERD and teaches undergraduate and graduate courses in exercise neuroscience and motor control in the department of kinesiology at the University of Massachusetts at Amherst. Saunders (Sandy) N. Whittlesey, PhD, a graduate of the University of Massachusetts at Amherst, is a self-employed technology consultant specializing in athletic training, sporting goods, and clinical applications. Additional Contributors Norma Coffey, PhD, a postdoctoral researcher in statistics at the National University of Ireland at Galway, has expertise is functional data analysis and worked extensively with the Biomechanics Research Unit at the University of Limerick. Her current area of research involves applying functional data analysis techniques to time-course gene expression data. Timothy R. Derrick, PhD, a professor in the department of kinesiology at Iowa State University, has an extensive background in signal processing and conducts research on impacts to the human body particularly from the ground during running activities. Kevin Deluzio, PhD, is a professor in the department of mechanical and materials engineering at Queen's UUniversity in Kingston, Canada, and held a similar position at Dalhousie University. He studies human locomotion to investigate the biomechanical factors of musculoskeletal diseases such as knee osteoarthritis. He is also interested in the design and evaluation of noninvasive therapies as well as surgical treatments such as total-knee replacement. Andrew (Drew) J. Harrison, PhD, is a senior lecturer in biomechanics in the department of physical education and sport sciences at the University of Limerick in Ireland and a fellow of the International Society for Biomechanics in Sport. He is the director of the Biomechanics Research Unit at the University of Limerick. His research focuses on biomechanics of sport performance and sport injuries. Thomas M. Kepple, PhD, is an instructor in the department of health, nutrition, and exercise sciences at the University of Delaware. He worked for many years as a biomechanist at the National Institutes of Health on motion capture technology and gait laboratory instrumentation. Ross H. Miller, PhD, an assistant professor in the department of kinesiology at the University of Maryland, has published papers on static optimization and forward dynamics as well as methods on nonlinear techniques of data analysis. Scott Selbie, PhD, is an adjunct professor at Queen's University, Canada, and at the University of Massachusetts at Amherst. He is a graduate of Simon Fraser University, Canada. He is the director of research at C-Motion, developers of the Visual3D software, and president of HAS-Motion in Canada. Brian R. Umberger, PhD, is an associate professor teaching biomechanics at the undergraduate and graduate levels in the department of kinesiology at the University of Massachusetts at Amherst. In 2010, he received the Outstanding Teacher Award for the School of Public Health and Health Sciences at the University of Massachusetts at Amherst. In his research, he uses a combination of experimental, modeling, and simulation approaches to study the biomechanics and energetics of human locomotion. Richard E.A. van Emmerik, PhD, is a professor in the kinesiology department at the University of Massachusetts at Amherst, where he teaches motor control at the undergraduate and graduate levels. In his research, he applies principles from complex and nonlinear dynamical systems to the study of posture and locomotion.

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Product details

Hardcover: 428 pages

Publisher: Human Kinetics; 2 edition (November 1, 2013)

Language: English

ISBN-10: 0736093400

ISBN-13: 978-0736093408

Product Dimensions:

8.6 x 1.3 x 11 inches

Shipping Weight: 3.2 pounds (View shipping rates and policies)

Average Customer Review:

4.3 out of 5 stars

9 customer reviews

Amazon Best Sellers Rank:

#203,917 in Books (See Top 100 in Books)

It took a long time to arrive, but that was expected. Otherwise, it was just what I needed. And I was happy to find it. Lol. I literally ordered it from Amazon while standing in my university’s bookstore, after they couldn’t help me.

This is a great resource for equations and learning biomechanics

Book was clean and everything was intact. I was lucky i even used it for another class in Kinesiology

I put this order in the month of July but the book does not bring the access code to biomechanics research software designed by C-Motion, Visual3DEducational Edition.Could you tell me some information about it.I need the access code.Ill waiting your response.ThanksPatricia de Baracald

good

Good

New and good as expected.

Only reason not 5 stars is because let's be honest, it is hard to "love" a textbook

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Download PDF Measurement in Fluid MechanicsBy Stavros Tavoularis

Download PDF Measurement in Fluid MechanicsBy Stavros Tavoularis

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Measurement in Fluid MechanicsBy Stavros Tavoularis

Measurement in Fluid Mechanics is an introductory, up-to-date, general reference in experimental fluid mechanics, describing both classical and state-of-the-art methods for flow visualization and for measuring flow rate, pressure, velocity, temperature, concentration, and wall shear stress. Particularly suitable as a textbook for graduate and advanced undergraduate courses. Measurement in Fluid Mechanics is also a valuable tool for practicing engineers and applied scientists. This book is written by a single author, in a consistent and straightforward style, with plenty of clear illustrations, an extensive bibliography, and over 100 suggested exercises. Measurement in Fluid Mechanics also features extensive background materials in system response, measurement uncertainty, signal analysis, optics, fluid mechanical apparatus, and laboratory practices, which shield the reader from having to consult with a large number of primary references. Whether for instructional or reference purposes, this book is a valuable tool for the study of fluid mechanics.

Stavros Tavoularis has received a Dipl. Eng. from the National Technical University of Athens, Greece, an M.Sc. from Virginia Polytechnic Institute and State University and a Ph.D. from The Johns Hopkins University. He has been a professor in the Department of Mechanical Engineering at the University of Ottawa since 1980, where he has served terms as the Department Chair and Director of the Ottawa-Carleton Institute for Mechanical and Aerospace Engineering. His research interests include turbulence structure, turbulent diffusion, vortical flows, aerodynamics, biofluid dynamics, nuclear reactor thermal hydraulics and the development of experimental methods. Professor Tavoularis is a Fellow of the Engineering Institute of Canada, a Fellow of the Canadian Society for Mechanical Engineering and a recipient of the George S. Glinski Award for Excellence in Research.

Contents:

Part I. General concepts: 1. Flow properties and basic principles; 2. Measuring systems; 3. Measurement uncertainty; 4. Signal conditioning, discretization, and analysis; 5. Background for optical experimentation; 6. Fluid mechanical apparatus; 7. Towards a sound experiment; Part II. Measurement techniques: 8. Measurement of flow pressure; 9. Measurement of flow rate; 10. Flow visualization techniques; 11. Measurement of local flow velocity; 12. Measurement of temperature; 13. Measurement of composition; 14. Measurement of wall shear stress; 15. Outlook.

  • Sales Rank: #2024131 in Books
  • Brand: Brand: Cambridge University Press
  • Published on: 2009-08-24
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.96" h x .75" w x 8.46" l, 1.45 pounds
  • Binding: Paperback
  • 370 pages
Features
  • Used Book in Good Condition

Review
"...Professor Tavoularis's excellent book, ... succeeds in bringing clarity and sense to the whole issue of experiments in fluid mechanics. This is a book that can be recommended to anyone working in fluid mechanics. On a basic level it provides a ready reference for the essential workings of the main experimental measurement processes that are so often referred to in the literature but which are rarely given sufficient explanation...this book can [also] be used in a much more advanced way to plan an entire experimental programme..."
J. Fluid Mech. (2007), vol. 574, pp. 506-507.

"Measurements in Fluid Mechanics contains a balanced mix of both theoretical and practical information.... The book also provides an unexpected, yet refreshing, mixture of fundamental electrical and electronic information as well as some background in physics...discusses methods for applying this engineering knowledge using 'time-tested sound practices' to produce measurement results that are both practicable and reliable."
--Proceedings of the Institution of Civil Engineers, Water Management 159

About the Author
Stavros Tavoularis is a Professor of Mechanical Engineering at the University of Ottawa and has served as Department Chair and Director of the Ottawa-Carleton Institute for Mechanical and Aerospace Engineering. His research interests include turbulence structure and diffusion, vortical flows, aerodynamics, biofluid dynamics, nuclear reactor thermal hydraulics and experimental methods. Professor Tavoularis is a Fellow of the American Physical Society and Fellow of the Canadian Academy of Engineering, the Engineering Institute of Canada, as well as the Canadian Society for Mechanical Engineering. He is a recipient of the George S. Glinski Award for Excellence in Research.

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