Item talk:Q226883

From geokb

{

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 "@type": "WebPage",
 "additionalType": "Research",
 "url": "https://www.usgs.gov/programs/environmental-health-program/science/hydrogeophysics-core-technology-team",
 "headline": "Hydrogeophysics Core Technology Team",
 "datePublished": "February 28, 2024",
 "author": [
   {
     "@type": "Person",
     "name": "Martin A. Briggs",
     "url": "https://www.usgs.gov/staff-profiles/martin-a-briggs",
     "identifier": {
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     "@type": "TextObject",
     "text": "About the Research."
   },
   {
     "@type": "TextObject",
     "text": "For example, geophysical methods based on measuring the electrical, thermal, and (or) physical properties of surface water, groundwater, and the shallow subsurface can enable the efficient geolocation and quantification of groundwater and surface-water related processes. Such spatially comprehensive and spatially distributed information can tie point measurements to larger geologic structures and ecological processes impacting flow and transport at local and regional scales. Similar data types collected over time (i.e., time-lapse data) allow researchers to track highly dynamic processes such as the movement of contaminant plumes, soil moisture, and saltwater intrusion. As a result, we are better able to understand and forecast movement of water between groundwater and surface-water bodies and associated changes in water quality and quantity."
   },
   {
     "@type": "TextObject",
     "text": "Monitoring Well and Borehole Geophysical Capabilities"
   },
   {
     "@type": "TextObject",
     "text": "\u2020 Hypertext links to non-USGS products and services; and the use of trade names, trademarks, company names, or other references to non-USGS products and services are provided for information only and do not constitute endorsement or warranty by the U.S. Geological Survey (USGS), U.S. Department of the Interior, or U.S. Government."
   },
   {
     "@type": "TextObject",
     "text": "Uncrewed Aircraft Capabilities"
   },
   {
     "@type": "TextObject",
     "text": "Land Surface Geophysical Capabilities"
   },
   {
     "@type": "TextObject",
     "text": "The Hydrogeophysics Core Technology Team (CTT) as part of the Environmental Health Program specializes in locating and quantifying exchanges of groundwater and surface water, along with characterizing geologic structure and mapping hydrologic connectivity across varied landscapes."
   },
   {
     "@type": "TextObject",
     "text": "Waterborne and Wetland Capabilities"
   },
   {
     "@type": "TextObject",
     "text": "The Hydrogeophysics CTT has been a leader in advancing the use of hydrogeophysics to study groundwater/surface-water exchange, groundwater process, and controlling geology for decades via methods and software development and pioneering research. Current efforts continue to foster innovation and development of hydrogeophysical technologies and methodologies to answer important questions related to PFAS and metals fate and transport, HABs, and other pressing EH research goals."
   },
   {
     "@type": "TextObject",
     "text": "The Hydrogeophysics CTT harnesses that magic using natural and induced geophysical signals to measure a range of hydrogeologic parameters relevant to the research of Integrated Science Teams."
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   "name": "Environmental Health Program",
   "url": "https://www.usgs.gov/programs/environmental-health-program"
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     "@type": "Thing",
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