Biomechanics: A Case-Based Approach

by
Edition: 1st
Format: Hardcover
Pub. Date: 2013-02-26
Publisher(s): Jones & Bartlett Learning
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Summary

Biomechanics: A Case-Based Approach focuses on the comprehension, retention, and application of the core concepts of biomechanics using problem-based learning strategies. The book features a broad range of case studies and examples to illustrate key content throughout the text. Relevant and realistic problems provide students with the opportunity to associate what they#146;re learning in class to real-life applications in the field. Biomechanics: A Case-Based Approach, offers a unique approach to understanding biomechanical concepts through the use of mathematical problems. The conversational writing style engages students#146; attention while not sacrificing the rigor of the content. Case studies and real-world examples illustrate key content areas while competency checks, located at the conclusion of each major section, correspond to the first three areas of Bloom's Taxonomy: remember, understand, and apply. Biomechanics: A Case-Based Approach employs the technique of guided discover to ensure that all students understand the concepts of biomechanics. To accommodate a variety of student learning styles, content is presented physically, graphically, and mathematically. Key features:Learning Objectives found at the beginning of each chapter address the objectives of each lesson Definitions presented in the margins of the text help define new words each time they appearImportant Points provide summaries in the margin throughout the textEssential Math boxes provide a review of essential math before it is presented in the textApplied Research helps to illustrate biomechanical conceptsCompetency Checks found at the conclusion of major sections ask conceptual and quantitative questions to foster critical thinking and further student comprehension End of Chapter Pedagogy includes: Chapter Summary and Conclusion, Review Questions, and a list of Chapter References

Table of Contents

Chapter1 Introduction
PartI The Whole Body Level
Chapter2 Describing Motion I: Linear Kinematics in One Dimension
Chapter3 Describing Motion II: Linear Kinematics in Two Dimensions
Chapter4 Describing Motion III: Angular Kinematics
Chapter5 Describing Motion IV: Inertia and Momentum
Chapter6 Explaining Motion I: Linear Kinetics
Chapter7 Explaining Motion II: Angular Kinetics
Chapter8 Explaining Motion III: Energy, Work, and Power
Chapter9 Explaining Motion IV: Impacts and the Conservation Laws
PartII Tissue Level
Chapter10 Biomechanics of the Human Frame: Tissue Mechanics
Chapter11 Biomechanics of the Human Motor: Muscle Mechanics
PartIII Joint Level
Chapter12 Single Joint Concepts
Chapter13 Lower Extremity Biomechanics
Chapter14 Trunk Biomechanics
Chapter15 Upper Extremity Biomechanics
PartIV Limb Level
Chapter16 Multi-Joint Concepts
PartV Integrating the Levels
Chapter17 Putting it All Together

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