图书简介
This unique volume applies physics and basic science to the mountain environment and is written in a non-technical language for curious laypeople who wonder why or how natural phenomena happen, and what their scientific explanation may be. The book discusses physics in a non-specialized way. Alpine Physics is mostly organized in categories relevant for non-scientists with an interest in alpine environments.
Intuitive decision-making is often just grounded in plain common sense, to which mountain and nature lovers relate easily, especially when involving high-stakes decisions based on the estimation of such a treacherous environment. The book highlights how this intuitive decision-making can be complemented and augmented by basic scientific knowledge, and with better understanding it leads one to become a rational decision-maker.
The book stimulates its readers to reason and discover why things are the way they are, at high altitudes, where many risk factors are aggravated, often dramatically, by steep gradients. The writing style marries that of the conventional science textbook and that of the informal North-American climbing guidebooks.
Key Features:
○Currently, the book has no competitors on the market
○The book allows readers with a passion for the mountains, for alpine environments, or for the outdoors in general to understand basic natural processes whose occurrence is enhanced, or even dramatic, in the mountains
○The treatment of the material is unique, in that the book is written from a very practical and non-academic point of view. Real life outdoors stories, followed by scientific reasoning, make the presentation of the scientific content more vivid and appealing
How High can a Mountain Be?; Mountains in the Solar System; Peaks, Passes, Valleys, and Topology; The Rock Cycle; Volcanos; Talus Cones, Avalanches, and the Angle of Repose; Sequoias and Capillarity; Water, Snow, and Ice; Water is Unusual; Pressure and Stresses; Phase Changes in the Mountains; Snowflakes and the Snowpack; Avalanche; Suncups and Penitentes; Glacier Puzzles; How Thick can a Glacier Be? How Deep can a Crevasse Be?; How Long Does It Take for Snow to Turn into Ice?; How Did Glacial Valleys Get their U-Shape?; Heat, Cold, and Air; Conserving Heat; Fö hn, Chinook, and Bicycle Pumps; Valley Breeze and Mountain Breeze; Archimedes in the Tent; Air Moisture; Weather forecasts; Rock Climbing; Biomechanics; Fall Factor; Never Rappel from a Tight Sling; The Yin and Yang of Friction; Why is the Sky Blue?; Lichens; Lightning and Thunderstorms; Science Labs in the Mountains
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