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Titlebook: Analysis of Biogeochemical Cycling Processes in Walker Branch Watershed; Dale W. Johnson,Robert I. Hook Textbook 1989 Springer-Verlag New

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(K)ein Ende, sondern ein Dranbleiben, the soil-plant-litter-atmosphere system. The development of a unified mechanistic approach to modeling the relationships of water, carbon, and chemicals (nutrients, pollutants) in forests was undertaken as a means of evaluating chronic pollutant impacts on terrestrial environments and the associate
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Introduction,1973, forest micrometeorology research jointly under the Department of Energy and the National Oceanic and Atmospheric Administration in 1976, atmospheric deposition studies under the National Atmospheric Deposition Program in 1980, and detailed acidic deposition effects research on canopy processes
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https://doi.org/10.1007/978-3-658-26670-71973, forest micrometeorology research jointly under the Department of Energy and the National Oceanic and Atmospheric Administration in 1976, atmospheric deposition studies under the National Atmospheric Deposition Program in 1980, and detailed acidic deposition effects research on canopy processes
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Textbook 1989ive research on nutrient cycling and biological productivity. This work was supported by the National Science Foundation (NSF). Over the next 4 years, intensive process-level research on primary productivity, decomposition, and belowground biological processes was coupled with ongoing DOE-supported
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Introduction,oviding base-line values for unpolluted natural waters, (2) contributing to our knowledge of cycling and loss of chemical elements in natural ecosystems, and (3) enabling the construction of models for predicting the effects of man’s activities on the landscape. Walker Branch Watershed is located in
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