Reston Stable Isotope Lab staff 3
Images
Explore our planet through photography and imagery, including climate change and water all the way back to the 1800s when the USGS was surveying the country by horse and buggy.
Reston Stable Isotope Lab staff 3
Sunrise over the Atlantic near Matanzas Inlet, FL. USGS was recovering seafloor platforms deployed to quantify storm effects on coastal inlet dynamics.
Sunrise over the Atlantic near Matanzas Inlet, FL. USGS was recovering seafloor platforms deployed to quantify storm effects on coastal inlet dynamics.
USGS scientist preparing plates for yeast bioassay screening
USGS scientist preparing plates for yeast bioassay screeningUSGS scientists working at laboratory fume hood
USGS scientist preparing plates for yeast bioassay screening
USGS scientist preparing plates for yeast bioassay screeningUSGS scientists working at laboratory fume hood
USGS Scientists at Capitol Hill Roundtable on Extreme Events
USGS Scientists at Capitol Hill Roundtable on Extreme EventsOn April 12, the USGS, together with the American Fisheries Society (AFS), hosted a roundtable discussion with congressional staff centered on the impacts of extreme weather events like hurricanes, floods, droughts, and wildfires on inland fish. Scientists with the USGS National Climate Adaptation Science Center (NCASC) are investigating how climate-relate
USGS Scientists at Capitol Hill Roundtable on Extreme Events
USGS Scientists at Capitol Hill Roundtable on Extreme EventsOn April 12, the USGS, together with the American Fisheries Society (AFS), hosted a roundtable discussion with congressional staff centered on the impacts of extreme weather events like hurricanes, floods, droughts, and wildfires on inland fish. Scientists with the USGS National Climate Adaptation Science Center (NCASC) are investigating how climate-relate
Dead Run is a typical urban creek in the Baltimore area (photo 1)
Dead Run is a typical urban creek in the Baltimore area (photo 1)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (photo 1)
Dead Run is a typical urban creek in the Baltimore area (photo 1)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (photo 2)
Dead Run is a typical urban creek in the Baltimore area (photo 2)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (photo 2)
Dead Run is a typical urban creek in the Baltimore area (photo 2)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (Photo 3)
Dead Run is a typical urban creek in the Baltimore area (Photo 3)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (Photo 3)
Dead Run is a typical urban creek in the Baltimore area (Photo 3)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (Photo 4)
Dead Run is a typical urban creek in the Baltimore area (Photo 4)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (Photo 4)
Dead Run is a typical urban creek in the Baltimore area (Photo 4)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (Photo 5)
Dead Run is a typical urban creek in the Baltimore area (Photo 5)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Dead Run is a typical urban creek in the Baltimore area (Photo 5)
Dead Run is a typical urban creek in the Baltimore area (Photo 5)Dead Run is an urban creek in Catonsville, Maryland, near Baltimore. Research has found that about half of the bed sediment originates as particulate matter on pavement that then is washed into the creek via storm drains.
Groundwater - Surveying - GNSS Suffolk County, Long Island, NY
Groundwater - Surveying - GNSS Suffolk County, Long Island, NYGroundwater - Surveying - Global Navigation Satellite System (GNSS) Suffolk County, Long Island, NY
Groundwater - Surveying - GNSS Suffolk County, Long Island, NY
Groundwater - Surveying - GNSS Suffolk County, Long Island, NYGroundwater - Surveying - Global Navigation Satellite System (GNSS) Suffolk County, Long Island, NY
The 3DR Solo quadcopter in flight, with a Ricoh GRII camera mounted, taking pictures to be used in photogrammetric techniques to produce 3D surface models.
The 3DR Solo quadcopter in flight, with a Ricoh GRII camera mounted, taking pictures to be used in photogrammetric techniques to produce 3D surface models.
Fish on the lake-bottom at South Manitou Island Lake Micigan
Fish on the lake-bottom at South Manitou Island Lake MiciganFish on the lake-bottom at South Manitou Island Lake Micigan
Fish on the lake-bottom at South Manitou Island Lake Micigan
Fish on the lake-bottom at South Manitou Island Lake MiciganFish on the lake-bottom at South Manitou Island Lake Micigan
Fish on the lake-bottom at South Manitou Island Lake Micigan
Fish on the lake-bottom at South Manitou Island Lake MiciganFish on the lake-bottom at South Manitou Island Lake Micigan
Fish on the lake-bottom at South Manitou Island Lake Micigan
Fish on the lake-bottom at South Manitou Island Lake MiciganFish on the lake-bottom at South Manitou Island Lake Micigan
Black River at Elyria, OH - high water
Black River at Elyria, OH - view from bank , fast moving water
Black River at Elyria, OH - view from bank , fast moving waterBlack River at Elyria, OH - view from bank , fast moving water
Black River at Elyria, OH - view from bank , fast moving water
Black River at Elyria, OH - view from bank , fast moving waterBlack River at Elyria, OH - view from bank , fast moving water
April 1868 Mauna Loa eruption can be seen in this aerial photo
April 1868 Mauna Loa eruption can be seen in this aerial photoMost of the lava flow (dark black) produced by the April 1868 Mauna Loa eruption can be seen in this aerial photo on the west (left) side of the prominent fault scarp, known informally as the Kahuku pali (formal names are Pali o Mamalu for the upper half and Pali‘okūlani for the lower half of the scarp).
April 1868 Mauna Loa eruption can be seen in this aerial photo
April 1868 Mauna Loa eruption can be seen in this aerial photoMost of the lava flow (dark black) produced by the April 1868 Mauna Loa eruption can be seen in this aerial photo on the west (left) side of the prominent fault scarp, known informally as the Kahuku pali (formal names are Pali o Mamalu for the upper half and Pali‘okūlani for the lower half of the scarp).
Gas chromatograph-mass spectrometer (GCMS) used for pesticide analysis
Gas chromatograph-mass spectrometer (GCMS) used for pesticide analysisOrganic Chemistry Research Laboratory — Sacramento, California. Gas chromatograph-mass spectrometer - GCMS
Gas chromatograph-mass spectrometer (GCMS) used for pesticide analysis
Gas chromatograph-mass spectrometer (GCMS) used for pesticide analysisOrganic Chemistry Research Laboratory — Sacramento, California. Gas chromatograph-mass spectrometer - GCMS
USGS scientist examining human breast cancer cells under a microscope
USGS scientist examining human breast cancer cells under a microscopeUSGS scientist examining human breast cancer cells under a microscope in the cell bioassay laboratory at Columbia Environmental Research Center. Behind the scientist is an automated liquid handling system for dispensing reagents into multi-well micropates for bioassay experiments.
USGS scientist examining human breast cancer cells under a microscope
USGS scientist examining human breast cancer cells under a microscopeUSGS scientist examining human breast cancer cells under a microscope in the cell bioassay laboratory at Columbia Environmental Research Center. Behind the scientist is an automated liquid handling system for dispensing reagents into multi-well micropates for bioassay experiments.
Video: Clear skies and sunshine provided a spectacular view of Kīlauea Volcano's summit lava lake this morning. Spattering on the north side and center of the lake surface—a departure from its more common location on the southeast side of the lake—occasionally happens when the surface flow direction reverses.
Video: Clear skies and sunshine provided a spectacular view of Kīlauea Volcano's summit lava lake this morning. Spattering on the north side and center of the lake surface—a departure from its more common location on the southeast side of the lake—occasionally happens when the surface flow direction reverses.
Bioactive Chemicals Research Laboratory -- Boulder, Colorado
Bioactive Chemicals Research Laboratory -- Boulder, ColoradoBioactive Chemicals Research Laboratory -- Boulder, Colorado. Fathead minnows (Pimephales promelas) swimming in an expermental aquaium
Bioactive Chemicals Research Laboratory -- Boulder, Colorado
Bioactive Chemicals Research Laboratory -- Boulder, ColoradoBioactive Chemicals Research Laboratory -- Boulder, Colorado. Fathead minnows (Pimephales promelas) swimming in an expermental aquaium
Collecting information about rock properties from a groundwater well
Collecting information about rock properties from a groundwater wellUSGS scientists setting up the nuclear magnetic resonance (NMR) geophyiscal logging cable to collect information about rock properties from a groundwater well borehole in the Texas southern highplains.
Collecting information about rock properties from a groundwater well
Collecting information about rock properties from a groundwater wellUSGS scientists setting up the nuclear magnetic resonance (NMR) geophyiscal logging cable to collect information about rock properties from a groundwater well borehole in the Texas southern highplains.