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The Physics of Skiing - Skiing at the Triple Point

English · Hardback

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Just over ten years ago when the first drafts of this book were being written, and even more so a few years after that as it was making its way through the publication process, alpine skiing was experiencing what eventually became a complete revolution in equipment and tech nique: "shaped" or "parabolic" skis completely took over the market, and even relatively beginning skiers expected to carve graceful turns as they schussed down the slopes. Re-reading our work with an eye to revision, we have been surprised to see how our focus on the physics of skiing in the first edition al lowed us to recognize the fundamental importance of what were then quite novel changes in equipment and technique. The essence of the enhancement offered by shaped skis is their greater sidecut radius. Our original discussion (then and now in Chapters 3 and 4) of the crucial role that a ski's sidecut plays in carving a turn caused us to write, for the most part, as if the shaped ski had always been in existence. Sim ilarly, our interest in the geometry ofthe sidecut allowed us to discuss snowboards in some detail as well, for the key to their ability to "shred" down the mountain is their deep sidecut.

List of contents

1 Introduction: At the Triple Point.- 2 Snow: The Playing Field.- 3 Equipment: Properties and Performance.- 4 Alpine Skiing Techniques: Gliding, Wedging, and Carving.- 5 Interactive Dynamics of Alpine Maneuvers.- 6 High-Performance Skiing.- 7 Nordic Skiing: Running the Tracks.- 8 Adventure Skiing.- 9 Friction: Glide and Grab.- 10 Epilogue: Physics, Skiing, and the Future.- Technote 1 Thermodynamics of Phase Changes.- Technote 2 Ski Loading and Flexure on a Groomed Snow Surface.- Technote 3 The Loads on a Running Ski.- Technote 4 Geometry of the Edged and Flexed Ski.- Technote 5 The Dynamics of Carving a Turn.- Technote 6 Up-and-Down Unweighting.- Technote 7 Analysis of Prejumping.- Technote 8 Aerodynamic Drag.- Technote 9 The Brachistochrone Problem.- Technote 10 Pumping to Increase Velocity.- Technote 11 The Skier as an Inverted Pendulum.- Technote 12 Ski Flexure in Uncompacted Snow.- Technote 13 Meltwater Lubrication.- Glossary of Commonly Used Notations and Symbols.- Units and Conversions.- Physics.- Snow.- Ski Mechanics.- Friction and Waxing.- Backcountry Skiing.- Biomechanics and Mountain Medicine.- Handbooks, Guides, and Symposia.- Bibliography of Authored and Edited Sources.

Summary

Just over ten years ago when the first drafts of this book were being written, and even more so a few years after that as it was making its way through the publication process, alpine skiing was experiencing what eventually became a complete revolution in equipment and tech­ nique: "shaped" or "parabolic" skis completely took over the market, and even relatively beginning skiers expected to carve graceful turns as they schussed down the slopes. Re-reading our work with an eye to revision, we have been surprised to see how our focus on the physics of skiing in the first edition al­ lowed us to recognize the fundamental importance of what were then quite novel changes in equipment and technique. The essence of the enhancement offered by shaped skis is their greater sidecut radius. Our original discussion (then and now in Chapters 3 and 4) of the crucial role that a ski's sidecut plays in carving a turn caused us to write, for the most part, as if the shaped ski had always been in existence. Sim­ ilarly, our interest in the geometry ofthe sidecut allowed us to discuss snowboards in some detail as well, for the key to their ability to "shred" down the mountain is their deep sidecut.

Additional text

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Review by L. W. Moore, formerly, University of Kentucky

"Lind (emer., Univ. of Colorado, Boulder) and Sanders (Univ. of New Mexico) offer this new edition, which retains the virtues noted in the review of the original (CH, Jun'97), derived from the serious application of physics to the enhancement of the understanding and experience of skiing. Skiers will find practical information with or without recourse to the (admittedly demanding) underlying physics. Teachers of physics will find an excellent primary or supplementary text detailing the physics of snow as well as a practical--dare we say, cool--demonstration of mechanical and aerodynamic principles. Historians of technology will find a case study of the application of scientific knowledge to the improvement of an originally "cut and try" technology. That prime demographic audience of physicists who also ski will find this book, naturally, definitive ... Summing Up: Highly recommended. Upper-division undergraduates through faculty."

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Review by L. W. Moore, formerly, University of Kentucky
"Lind (emer., Univ. of Colorado, Boulder) and Sanders (Univ. of New Mexico) offer this new edition, which retains the virtues noted in the review of the original (CH, Jun'97), derived from the serious application of physics to the enhancement of the understanding and experience of skiing. Skiers will find practical information with or without recourse to the (admittedly demanding) underlying physics. Teachers of physics will find an excellent primary or supplementary text detailing the physics of snow as well as a practical--dare we say, cool--demonstration of mechanical and aerodynamic principles. Historians of technology will find a case study of the application of scientific knowledge to the improvement of an originally "cut and try" technology. That prime demographic audience of physicists who also ski will find this book, naturally, definitive ... Summing Up: Highly recommended. Upper-division undergraduates through faculty."

Product details

Authors David Lind, David A Lind, David A. Lind, Scott Sanders, Scott P Sanders, Scott P. Sanders
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 30.04.2004
 
EAN 9780387007229
ISBN 978-0-387-00722-9
No. of pages 270
Dimensions 159 mm x 22 mm x 241 mm
Weight 576 g
Illustrations XVIII, 270 p.
Subjects Guides > Sport > Winter sport
Natural sciences, medicine, IT, technology > Physics, astronomy > General, dictionaries
Non-fiction book > Nature, technology > Natural science

Physik, Ski - Abfahrt (Ski), biomechanics; dynamics; mechanics; physiology

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