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Problem The Village of Dryden, rural homeowners, farms, and businesses in the Virgil Creek Valley tap several confined sand and gravel aquifers in the Virgil Creek valley in the town of Dryden . The valley contains a large moraine with complex stratigraphy consisting of continuous and discontinuous layers of till, lake deposits, and glaciofluvial sand and gravel. Sand and gravel units form the aquifers in the valley-fill deposits. There are at least three extensive confined aquifer units at various depths. However, little is known about (1) the location of recharge and discharge areas, (2) direction of groundwater flow, (3) extent of hydraulic connection between aquifer units, and (4) extent of surface- and ground-water...
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Coastal communities are uniquely vulnerable to sea-level rise (SLR) and severe storms such as hurricanes. These events enhance the dispersion and concentration of natural and anthropogenic chemicals and pathogenic microorganisms that could adversely affect the health and resilience of coastal communities and ecosystems in coming years. The U.S. Geo­logical Survey has developed the Sediment-Bound Contaminant Resiliency and Response (SCoRR) strategy to define baseline and post-event sediment-bound environmental health (EH) stressors. These data document toxicity measured by reduction of the light emission of Aliivibrio (formerly Photobacterium) fischeri and the inhibition of polymerase chain reactions caused by environmental...
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Introduction Detailed mapping of the valley-fill aquifer within the Susquehanna River valley and adjacent tributary valleys in south-central Broome County (Towns of Conklin and Kirkwood) is the latest study in the cooperative Detailed Aquifer Mapping Program between the US Geological Survey (USGS) and the New York State Department of Environmental Conservation (NYSDEC). The aim of the program is to map sand and gravel aquifers in New York State at a scale of 1:24,000. This information is used by NYSDEC Division of Water and others to delineate groundwater contributing areas, assess potential threats to aquifers from both point and non-point sources, respond to contamination from spills or leaks from underground...
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Problem – Currently, swim advisories or closings are issued by beach managers based on standards for concentrations of bacterial indicators such as Escherichia coli (E. coli). Standard culture methods for these bacteria take at least 18-24 hours before results are available. At most Great Lakes beaches, the beach is posted with an advisory or closing or is determined to be acceptable for swimming on the basis of the previous day’s E. coli concentration. Sanitary conditions may change overnight and even throughout the day (Boehm and others, 2002) making decisions made from previous days information incorrect. Because of this time-lag issue, water-resource managers are seeking solutions that provide near real-time...
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.
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Layers of geospatial data include contours, boundaries, land cover, hydrography, roads, transportation, geographic names, structures, and other selected map features.


map background search result map search result map Detailed Aquifer Mapping in the Susquehanna River Valley  in South-Central Broome County –Towns of Conklin and Kirkwood Hydrogeology of the Virgil Creek Valley in the Town of Dryden, Tompkins County, New York New York Nowcast, Recreational Beaches of New York Matrix inhibition PCR and Microtox® 81.9% screening assay analytical results for samples collected for the Sediment-Bound Contaminant Resiliency and Response Strategy pilot study, northeastern United States, 2015 USGS Combined Vector for Brisben, New York 20160804 7.5 x 7.5 minute Shapefile USGS Combined Vector for Erin, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Topo Map Vector Data (Vector) 31784 New London, Connecticut 20161220 for 7.5 x 7.5 minute Shapefile USGS Combined Vector for Arcade, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Auburn, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Ashford, New York 20160804 7.5 x 7.5 minute Shapefile USGS Combined Vector for Bay Shore West, New York 20160805 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Caton, New York 20160806 7.5 x 7.5 minute Shapefile USGS Combined Vector for Corbett, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Corfu, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Topo Map Vector Data (Vector) 13948 Elizabeth, New Jersey 20170223 for 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Ellenburg Depot OE N, New York 20160804 7.5 x 7.5 minute Shapefile USGS Combined Vector for Endicott, New York 20160805 7.5 x 7.5 minute Shapefile USGS Combined Vector for Galloo Island, New York 20160804 7.5 x 7.5 minute Shapefile USGS Combined Vector for Geneseo, New York 20160811 7.5 x 7.5 minute Shapefile USGS Combined Vector for Grafton, New York 20160805 7.5 x 7.5 minute Shapefile Hydrogeology of the Virgil Creek Valley in the Town of Dryden, Tompkins County, New York USGS Combined Vector for Brisben, New York 20160804 7.5 x 7.5 minute Shapefile USGS Combined Vector for Erin, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Topo Map Vector Data (Vector) 31784 New London, Connecticut 20161220 for 7.5 x 7.5 minute Shapefile USGS Combined Vector for Arcade, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Auburn, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Ashford, New York 20160804 7.5 x 7.5 minute Shapefile USGS Combined Vector for Bay Shore West, New York 20160805 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Caton, New York 20160806 7.5 x 7.5 minute Shapefile USGS Combined Vector for Corbett, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Corfu, New York 20160804 7.5 x 7.5 minute FileGDB 10.1 USGS Topo Map Vector Data (Vector) 13948 Elizabeth, New Jersey 20170223 for 7.5 x 7.5 minute FileGDB 10.1 USGS Combined Vector for Ellenburg Depot OE N, New York 20160804 7.5 x 7.5 minute Shapefile USGS Combined Vector for Endicott, New York 20160805 7.5 x 7.5 minute Shapefile USGS Combined Vector for Galloo Island, New York 20160804 7.5 x 7.5 minute Shapefile USGS Combined Vector for Geneseo, New York 20160811 7.5 x 7.5 minute Shapefile USGS Combined Vector for Grafton, New York 20160805 7.5 x 7.5 minute Shapefile Detailed Aquifer Mapping in the Susquehanna River Valley  in South-Central Broome County –Towns of Conklin and Kirkwood New York Nowcast, Recreational Beaches of New York Matrix inhibition PCR and Microtox® 81.9% screening assay analytical results for samples collected for the Sediment-Bound Contaminant Resiliency and Response Strategy pilot study, northeastern United States, 2015