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The Saqqarliup sermia outlet glacier terminus, western Greenland Ice Sheet margin.
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The Saqqarliup sermia outlet glacier terminus, western Greenland Ice Sheet margin.
The Saqqarliup sermia outlet glacier terminus, western Greenland Ice Sheet margin.
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453565
Creator
Osman, Matthew
Title
The Saqqarliup sermia outlet glacier terminus, western Greenland Ice Sheet margin.
The Saqqarliup sermia outlet glacier terminus, western Greenland Ice Sheet margin.
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Date
07/14/2018
File name
Osman_Greenland_Terminus_2018.jpg
Notes
Caption from Oceanus magazine, Vol. 54, No. 2, Pg. 23: Arctic ice loss— Summertime ice melt along the Greenland Ice Sheet has sped up in recent decades, with more fresh water flowing into the surrounding ocean. Image Of the Day caption: Summertime ice melt along the Greenland Ice Sheet has sped up in recent decades, more fresh water to flow into the surrounding ocean. The fresh water carries nutrients and organic carbon, which can affect the growth rates of marine microbes living. MIT-WHOI Joint Program graduate student Matt Osman and WHOI associate scientist Sarah Das, along with scientists from the University of Alberta, are studying the rates at which microbes living in these ocean waters metabolize and grow in order to determine how future melting may affect ecosystems and carbon storage in the ocean.
Caption from Oceanus magazine, Vol. 54, No. 2, Pg. 23:
Arctic ice loss—
Summertime ice melt along the Greenland Ice Sheet has sped up in recent decades, with more fresh water flowing into the surrounding ocean.
Image Of the Day caption:
Summertime ice melt along the Greenland Ice Sheet has sped up in recent decades, more fresh water to flow into the surrounding ocean. The fresh water carries nutrients and organic carbon, which can affect the growth rates of marine microbes living. MIT-WHOI Joint Program graduate student Matt Osman and WHOI associate scientist Sarah Das, along with scientists from the University of Alberta, are studying the rates at which microbes living in these ocean waters metabolize and grow in order to determine how future melting may affect ecosystems and carbon storage in the ocean.
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© Shane Gross/Greenpeace
© Woods Hole Oceanographic Institution
Adinah Barnett
Adobe Farmhouse Photography
Alamy Stock Photo
Courtesy of National Aeronautics and Space Administration
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Illustration by Eric S. Taylor, WHOI Creative
Illustration by Jack Cook
Illustration by Jayne Doucette
Illustration by Natalie Renier, WHOI Creative
Marine Imaging Technologies, LLC © Woods Hole Oceanographic Institution
Photo by Amy Apprill
Photo by Craig LaPlante
Photo by Daniel Hentz
Photo by Danielle Fino
Photo by Darlene Trew Crist
Photo by Elise Hugus
Photo by Hannah Piecuch
Photo by Jayne Doucette
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Photo courtesy of Woods Hole Oceanographic Institution Archives
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Video by Craig LaPlante
Video by Danielle Fino
Video by Hannah Piecuch
Video by Jayne Doucette
Video by Ken Kostel
Video by Matthew Barton
WHOI Creative © Woods Hole Oceanographic Institution
-- Other --
Photo by Matt Osman
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Image courtesy of NOAA Ocean Exploration, Deep Connections 2019.
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Osman_Greenland_Terminus_2018.jpg
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etaylor: Oceanus magazine, Vol. 54, No. 2, Pg. 23 etaylor: Holiday Card etaylor: Vetlesen efitzpatrick: vetlsen cummenhofer: potentially for press release jdoucette: Image Of the Day, 09/04/2018
etaylor: Oceanus magazine, Vol. 54, No. 2, Pg. 23
etaylor: Holiday Card
etaylor: Vetlesen
efitzpatrick: vetlsen
cummenhofer: potentially for press release
jdoucette: Image Of the Day, 09/04/2018
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