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World book of swimming : from science to performance / Ludovic Seifert and Didier Chollet, editors.

Contributor(s): Material type: TextTextSeries: Sports and athletics preparation, performance, and psychology seriesPublisher: New York : Nova Science Publishers, [2011]Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781617282294
  • 1617282294
Subject(s): Genre/Form: Additional physical formats: Print version:: World book of swimmingDDC classification:
  • 797.2/1 23
LOC classification:
  • GV838.67.T73
Online resources:
Contents:
""Library of Congress Cataloging-in-Publication Data""; ""Contents""; ""Preface""; ""Section I""; ""Biomechanics""; ""Biomechanics of Drag and Propulsion in Front Crawl Swimming""; ""Abstract""; ""1. Introduction""; ""2. Drag""; ""3. Measurement of Drag""; ""Practical Application""; ""4. Propelling Efficiency""; ""Practical Application""; ""5. Propulsion""; ""Pumped-Up Propulsion""; ""6. Contribution of the Kick to Propulsion in the Front Crawl""; ""Conclusion""; ""References""; ""Hydrodynamics in Swimming""; ""Abstract""; ""1. Introduction""; ""2. Properties of Water""
""3. Hydrostatic Pressure""""4. Buoyancy""; ""5. Hydrodynamic Lift And Total Drag Of Body at Constant Speed""; ""5.1. Hydrodynamic Lift""; ""5.2. Total Drag""; ""5.3. Friction Drag""; ""5.4. Form Drag""; ""5.5. Wave Drag""; ""6. Unsteady Swimming Conditions""; ""7. Acceleration Reaction And Drag Factor""; ""8. Hydrodynamic Pressure""; ""9. Vortex-Induced Flow Effects""; ""10. Momentum-Induced Self-Propulsion in Water""; ""11. Vortex-Oriented Concept in Sport Swimming""; ""11.1. Rear-Driven Propulsion""; ""11.2. Front-Driven Propulsion""; ""12. Practical Applications""; ""Conclusion""
""3.6. EMG Studies of Backstroke, Breaststroke and Butterfly""""Backstroke""; ""Breaststroke""; ""Butterfly / Dolphin""; ""4. Practical Applications""; ""Conclusion""; ""References""; ""Biomechanical Evaluation of Freestyle Swimming""; ""Abstract""; ""Introduction""; ""1. Kinematics and Kinetics Evaluations""; ""1.1. Kinematics""; ""1.1.1. Direct Methods""; ""1.1.2. Indirect Approach""; ""1.2. The Kinetics""; ""1.2.1. Dry-land Conditions""; ""1.2.2. Water Conditions""; ""2. The Use of Kinematics, Kinetics, and EMG in the Evaluation of Technical Ability""; ""2.1. Stroke Phases""
""2.2. Relationships between the Swimming Velocity and Kinematics,""""Kinetics or EMG Parameters""; ""2.2.1.-Relationships Between the Swimming Velocity and the Kinematics Parameters""; ""2.2.2. Relationships Between Swimming Velocity and the Kinetics Parameters""; ""2.2.3. Relationships between Swimming Velocity and EMG Parameters""; ""2.3. Kinematics and Kinetics Evaluation of Right and Left""; ""Symmetry Patterns""; ""2.4. Kinematics, Kinetics and EMG Evaluation of the Fatigue State""; ""2.4.1. Fatigue Definitions""; ""2.4.2. Effects of Fatigue on Kinematics Parameters""
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Electronic-Books Electronic-Books OPJGU Sonepat- Campus E-Books EBSCO Available

Includes bibliographical references and index.

Description based on print version record.

""Library of Congress Cataloging-in-Publication Data""; ""Contents""; ""Preface""; ""Section I""; ""Biomechanics""; ""Biomechanics of Drag and Propulsion in Front Crawl Swimming""; ""Abstract""; ""1. Introduction""; ""2. Drag""; ""3. Measurement of Drag""; ""Practical Application""; ""4. Propelling Efficiency""; ""Practical Application""; ""5. Propulsion""; ""Pumped-Up Propulsion""; ""6. Contribution of the Kick to Propulsion in the Front Crawl""; ""Conclusion""; ""References""; ""Hydrodynamics in Swimming""; ""Abstract""; ""1. Introduction""; ""2. Properties of Water""

""3. Hydrostatic Pressure""""4. Buoyancy""; ""5. Hydrodynamic Lift And Total Drag Of Body at Constant Speed""; ""5.1. Hydrodynamic Lift""; ""5.2. Total Drag""; ""5.3. Friction Drag""; ""5.4. Form Drag""; ""5.5. Wave Drag""; ""6. Unsteady Swimming Conditions""; ""7. Acceleration Reaction And Drag Factor""; ""8. Hydrodynamic Pressure""; ""9. Vortex-Induced Flow Effects""; ""10. Momentum-Induced Self-Propulsion in Water""; ""11. Vortex-Oriented Concept in Sport Swimming""; ""11.1. Rear-Driven Propulsion""; ""11.2. Front-Driven Propulsion""; ""12. Practical Applications""; ""Conclusion""

""3.6. EMG Studies of Backstroke, Breaststroke and Butterfly""""Backstroke""; ""Breaststroke""; ""Butterfly / Dolphin""; ""4. Practical Applications""; ""Conclusion""; ""References""; ""Biomechanical Evaluation of Freestyle Swimming""; ""Abstract""; ""Introduction""; ""1. Kinematics and Kinetics Evaluations""; ""1.1. Kinematics""; ""1.1.1. Direct Methods""; ""1.1.2. Indirect Approach""; ""1.2. The Kinetics""; ""1.2.1. Dry-land Conditions""; ""1.2.2. Water Conditions""; ""2. The Use of Kinematics, Kinetics, and EMG in the Evaluation of Technical Ability""; ""2.1. Stroke Phases""

""2.2. Relationships between the Swimming Velocity and Kinematics,""""Kinetics or EMG Parameters""; ""2.2.1.-Relationships Between the Swimming Velocity and the Kinematics Parameters""; ""2.2.2. Relationships Between Swimming Velocity and the Kinetics Parameters""; ""2.2.3. Relationships between Swimming Velocity and EMG Parameters""; ""2.3. Kinematics and Kinetics Evaluation of Right and Left""; ""Symmetry Patterns""; ""2.4. Kinematics, Kinetics and EMG Evaluation of the Fatigue State""; ""2.4.1. Fatigue Definitions""; ""2.4.2. Effects of Fatigue on Kinematics Parameters""

English.

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