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Environmental Systems Research

ESRI 1998. ESRI Shapefile Technical Description. An ESRI White Paper—July 1998. Environmental Systems Research Institute, Redlands, California. [Pg.392]

Environmental Systems Research Institute. (1996). World Countries (1995). Redlands, CA ... [Pg.14]

Following this hypothesis, we modelled the species distribution for the rainfall and temperature data during the LGM. Our first step was to create climatic layers on the basis of present-day data — mean precipitation per month and mean minimum temperature from the Intergovernmental Panel on Climate Change (2003) — using a request in the ArcView software (Environmental Systems Research Institute, 1996). A range of 5°C and 30% of precipitation were cut off from each cell of these climatic layers. [Pg.206]

Environmental Systems Research Institute, Using ArcView GIS. The Geographic Information System for Everyone, ESRI, Redlands, 1996. [Pg.209]

World Imagery (2015) [Map Service]. Environmental Systems Research Institute. http //ArcGIS.com (accessed June 30, 2015). [Pg.57]

Demarest, G. (2004). Cadastres (Land Registries) and Global Security. Paper presented at the Environmental Systems Research Institute (ESRl) Users Conference. Retrieved April 29,2009, from http //proceedings.esri.com/library/userconiyproc04/docs/pap2177.pdf... [Pg.2048]

Pflrman, S.. and the NSF Advisory Committee for Environmental Research and Education (2003). Complex Environmental Systems Synthesis for Earth. Life, and Society in the 2l Century, A report summarizing a 10-year outlook in environmental research and education for the National Science Eoundation, 68 pp. [Pg.852]

T0881 Western Research Institute, Contained Recovery of Oily Wastes (CROW) T0899 Zenon Environmental Systems, Inc., ZenoGem... [Pg.40]

Karickhoff, S.W. 1983. Pollutant sorption in environmental systems. (No. EPA-600/D-83-083). Environmental Research Laboratory, U.S. Environmental Protection Agency, July. [Pg.205]

The remainder of this Section summarizes what is currently known about the identity of oxidants and reductants relevant to environmental systems, in order to provide a basis for estimating rates of contaminant transformations by specific pathways. With respect to natural reductants, however, a great deal remains to be learned, so substantial developments can be expected as new research in this area becomes available. [Pg.413]

Department of Earth System Science, Center for Global Environmental Change Research and Institute for Geophysics, University of California, Irvine, California... [Pg.219]

With the rapid developments in environmental physics, chemistry, and biology, it is becoming much harder, if not impossible, for scientists to follow new developments outside their immediate area of research by reading the primary research literature. This book series will capture pertinent research topics of significant current interest and will present to the environmental science community a distilled and integrated version of new developments in biophysico-chemical processes in environmental systems. [Pg.894]

Allison J, Brown DS, Novo-Gradac K. US Environmental Protection Agency, Environmental Research Laboratory. 1991. MINTEQA2/PROEFA2 a geochemical assessment model for environmental systems, http //www.epa.gov/ceampubl/mmedia/minteq/ index.htm (accessed July 28, 2005). [Pg.323]

Acknowledgments. This research was supported by the NSF program in Bioengineering and Environmental Systems Division/Biotechnology under Contract ECS-0120309. [Pg.130]


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Environmental Research

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