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Titlebook: Global Climate and Ecosystem Change; Gordon J. MacDonald,Luigi Sertorio Book 1990 Springer Science+Business Media New York 1990 Potential.

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楼主: Disperse
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Book 1990 potential for altering global climate. The major terrestrial biomes are also changing. Although world attention has focused on deforestation, particularly in tropical areas, the development of agriculture, the diversion of water resources, and urbanization have all modified terrestrial ecosystems i
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Plain Film Signs of Pneumoperitoneum,hange to climate change, together with observations of the atmospheric compositions and climates of earth’s neighboring planets, Venus and Mars, compels us to consider seriously the possibility that future changes in climate due to Man’s activities will be damaging. This article reviews the scientif
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Giant Cell Tumor of Bone: Case 11estrial ecosystems. The main theme concerns the ways in which changes in precipitation and temperature could alter the structure and function of plant and animal communities, and how changes in vegetative cover could alter albedo, surface roughness, and evapotranspiration to influence subsequent cli
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Imaging of Bone and Soft Tissue Tumorsal climate will therefore affect not only the circulation patterns of the oceans, but also, by extension, the role of the oceans as a reservoir for heat and atmospheric gases. Elements such as carbon take approximately 100 years to be exchanged between the surface waters and deeper layers of the oce
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G. Schuierer,J. Grebmeier,W. J. Huk nonlinear, abound in physical and biological applications, and have been studied for nearly a century (Poincaré, 1899) in contexts ranging from classical mechanics and fluid dynamics to epidemiology. For climatic systems, the lessons of chaos for fluid dynamics are of special relevance.
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A. C. Goussia,K. Polyzoidis,A. P. Kyritsishe statistical mechanics of physical systems. The analogy gives rise to an algorithm for finding near-optimal solutions to any given problem by simulating the cooling of the corresponding physical system. Just as nature, under most conditions, can cool a macroscopic system to, or very close to, its
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George Karkavelas,Nickolaos Tascoscertain range is lost. Chaotic behavior can be found in systems with only a few total or relevant dynamical variables. It has recently been suggested, however, that a few variables may be sufficient to model the dynamics of the atmosphere. This hypothesis is supported only by studies aimed at estima
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Modeling Climate Change more, the climate and biology of earth have evolved together, with gradual changes occurring in the climate and in the particular organisms best suited for coexistence. Early in earth’s history, primitive photosynthetic organisms such as cyanobacteria developed in the oceans. Photosynthesis in the
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