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Titlebook: Ocean Processes in Climate Dynamics; Global and Mediterra Paola Malanotte-Rizzoli,Allan R. Robinson Book 1994 Springer Science+Business Med

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书目名称Ocean Processes in Climate Dynamics
副标题Global and Mediterra
编辑Paola Malanotte-Rizzoli,Allan R. Robinson
视频video
丛书名称Nato Science Series C:
图书封面Titlebook: Ocean Processes in Climate Dynamics; Global and Mediterra Paola Malanotte-Rizzoli,Allan R. Robinson Book 1994 Springer Science+Business Med
描述One of the most crucial but still very poorly understood topicsof oceanographic science is the role of ocean processes incontributing to the dynamics of climate and global change. This bookpresents a series of high level lectures on the major categories ofocean/atmosphere processes. Three of these major issues are the focusof the lectures: (1) air--sea interaction processes; (2) water massformation, dispersion and mixing; (3) general circulation, withspecific emphasis on the thermohaline component. Global examples inthe world ocean are provided and discussed in the lectures. Inparallel, the Mediterranean Sea is a laboratory basin in providinganalogues of the above global processes relevant to climate dynamics.They include the Mediterranean thermohaline circulation with its own`conveyor belt‘; intermediate and deep water mass formation andtransformations, dispersion and mixing. No other book in the fieldprovides a review of fundamental lectures on these processes, coupledwith global examples and their Mediterranean analogues. .
出版日期Book 1994
关键词Ocean; Oceanography; Scale; geochemistry; marine; wind
版次1
doihttps://doi.org/10.1007/978-94-011-0870-6
isbn_softcover978-94-010-4376-2
isbn_ebook978-94-011-0870-6Series ISSN 1389-2185
issn_series 1389-2185
copyrightSpringer Science+Business Media Dordrecht 1994
The information of publication is updating

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William R. Holland,Frank O. Bryanf- mance at very high frequencies suffers drastically from the material de?ciencies. As a result, engineers and scientists are relentlessly in search for the new types of materials, and composites which will meet the device performance requirements and not present any de?ciencies due to material ele
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William R. Holland,Frank O. Bryanf- mance at very high frequencies suffers drastically from the material de?ciencies. As a result, engineers and scientists are relentlessly in search for the new types of materials, and composites which will meet the device performance requirements and not present any de?ciencies due to material ele
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Wolfgang Roetherof devices using composite structures made of gyrotropic andAs technology matures, communication system operation regions shift from mic- wave and millimeter ranges to sub-millimeter ranges. However, device perf- mance at very high frequencies suffers drastically from the material de?ciencies. As a
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John Marshall,J. A. Whitehead,Tom Yatesf- mance at very high frequencies suffers drastically from the material de?ciencies. As a result, engineers and scientists are relentlessly in search for the new types of materials, and composites which will meet the device performance requirements and not present any de?ciencies due to material ele
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J. P. Bethoux,B. Gentilif- mance at very high frequencies suffers drastically from the material de?ciencies. As a result, engineers and scientists are relentlessly in search for the new types of materials, and composites which will meet the device performance requirements and not present any de?ciencies due to material ele
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