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Titlebook: GIS for Health and the Environment; Development in the A Poh C. Lai,Ann S. H. Mak Book 2007 Springer-Verlag Berlin Heidelberg 2007 ArcGIS.D

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https://doi.org/10.1007/978-3-540-71318-0ArcGIS; Development in the Asia Pacific Regions; Environmental and Public Health Systems; Epidemiology;
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https://doi.org/10.1007/978-3-031-55920-4ither positive or negative health consequences. We were able to show that a diagnosis of environmental risks to population health discloses the locations at risks and the potential contribution of environment factors to the disease. In the second case, we used SARS to show the modeling of a communic
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https://doi.org/10.1007/978-981-99-9684-1 common spatial database and the modeled results can be visualized spatially by desktop and Web clients. A complete solution for establishing the SDSS for epidemic disease prevention based on the model integrating methods and the ArcGIS software is suggested in this chapter. The proposed SDSS compri
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https://doi.org/10.1007/978-3-322-99531-5e accessibility indicator based on spatial interaction techniques. Each one of these models aggregates the city into accessibility zones. The resulted zones can be used by health planners in deciding whether current health facilities cover the entire city on not. The ArcGIS Spatial Analyst and Netwo
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Hitlers Rede auf dem Erntedankfest 1937, intersection densities provide people with a greater variety of potential routes, easier access to major roads where public transport is available and shorter times to get to destinations). . (the more varied the land use mix and built form, then the more conducive it is to walk to various destinat
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Raumentwicklung als Aneignungsprozesstion Criterion (AIC) from a suite of ecologically reasonable predictor variables. Based on the results, we provided a new method to compartmentalize the habitat-suitability in the native range. Finally, we used the model and the compartmentalized criterion developed in the native range to “project”
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