Karabiner

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Materials in Sports Equipment

Improvements in materials technology have made a significant impact on sporting performance in recent years. Advanced materials and novel processing methods have enabled the development of new types of equipment with enhanced properties, as well as improving the overall design of sporting goods. The interdependence between material technology and design, and its impact on many of the most popular sports, is reviewed in this book.Materials in sports equipment presents the latest research, from a distinguished panel of international contributors, into the chemical structure and composition, microstructure and material processing of the various materials used in a wide range of sports. The relationship between performance and design is examined in detail for each sport covered.Part one concentrates on the general use of materials in sports. Here, the reader is given a broad insight into the overall influence of materials in sports, and the significance of material processing and design. Part two focuses on showing how individual sports have benefited from recent improvements in material technology. It also analyses the way in which improvements in our understanding of biomechanics and the engineering aspects of sports equipment performance have influenced materials and design. Sports whose equipment is considered in detail include: golf, tennis, cycling, mountaineering, skiing, cricket and paralympic sports. The overall aim of the book is to make the reader aware of the interaction between the type of material, its selection, processing and surface treatment, and show how this process underpins the performance of the final sporting product.It is essential reading for all materials scientists and researchers working in this rapidly developing field. - A major handbook on materials in sports - Practical guide to material selection and processing for equipment used in many popular sports - Shows how material characteristics affect design and performance
Crack Climbing – Mastering the skills & techniques

Author: Pete Whittaker
language: en
Publisher: Vertebrate Publishing
Release Date: 2020-01-15
The ability to climb cracks is at the core of a climber's craft. Crack Climbing by Pete Whittaker provides a single point of reference for all crack climbing techniques, regardless of the grade you climb. Pete is widely regarded as one of the best crack climbers in the world, having made dozens of cutting-edge first ascents and hard repeats, including the first ascent of Century Crack (5.14b) in Canyonlands, Utah. In this book, Pete has drawn on years of experience to demonstrate the many different techniques and to give you an understanding of when, why and how to use them. Develop these skills with confidence and your climbing standard will improve. The book is split into easily accessible sections on techniques for different widths of cracks, including finger cracks, hand and fist cracks, offwidth cracks and chimneys. Pete looks at the basics, including the hand jam – the essential technique in any crack climber's repertoire – right through to advanced techniques such as the sidewinder and the trout tickler. Step-by-step practical information and how-tos are supplemented with tips and tricks from Pete alongside illustrations by Alex Poyzer and photographs. Additional chapters cover how to tape up, as well as essential gear and equipment. Pete has also interviewed some of the world's top crack climbers so that you can learn from the best. Gain insights from Lynn Hill, Alex Honnold, Barbara Zangerl, Peter Croft and more. Master the craft and advance your climbing. It's time to jam!
The Engineering of Sport

Science and technology has been used more and more in the last few decades to gain advantage over competitors. Quite often, however, the actual science involved is not published because a suitable journal cannot be found. The Engineering of Sport brings together work from a very diverse range of subjects including Engineering, Physics, Materials and Biomechanics. The Engineering of Sport represent work which was represented at the 1st International Conference on the Engineering of Sport held in Sheffield, UK in July 1996. Many sports were represented and the material covered split into nine topics covering aerodynamics, biomechanics, design, dynamics, instrumentation, materials, mechanics, modelling, motion analysis, and vibrations. It should be of interest to specialists in all areas of sports research.