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Laura Stevens jumping over a stream over meltwater atop the Greenland Ice Sheet.
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Laura Stevens jumping over a stream over meltwater atop the Greenland Ice Sheet.
Laura Stevens jumping over a stream over meltwater atop the Greenland Ice Sheet.
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(68°45′4″N, 49°32′36″W)
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251061
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Das, Sarah
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Laura Stevens jumping over a stream over meltwater atop the Greenland Ice Sheet.
Laura Stevens jumping over a stream over meltwater atop the Greenland Ice Sheet.
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Date
07/16/2013
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Das_Laura_streamxing2_2013_DSC_0710.jpg
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Caption from Oceanus online: Laura Stevens leaps over a stream of meltwater atop the Greenland Ice Sheet. Stevens, a graduate student in the MIT-WHOI Joint Program in Oceanography, was lead author of a new study that identified a surprising trigger mechanism that causes large cracks to split open the bottoms of supraglacial lakes. The study was published in the prestigious scientific journal "Nature". Caption from Oceanus magazine, Vol. 51, No. 2, front cover image: On the cover: MIT-WHOI graduate student Laura Stevens leaps over a stream of meltwater atop the Greenland Ice Sheet. Stevens was lead author of a study that identified a surprising mechanism that triggers large cracks to split open the bottoms of supraglacial lakes. See story on Page 20. Image Of the Day caption: MIT-WHOI graduate student Laura Stevens leaps over a stream of meltwater on the Greenland Ice Sheet. Stevens was part of team (including WHOI scientists Sara Das, Mark Behn, and Jeff McGuire) that identified a surprising mechanism that triggers large cracks to form in the bottoms of lakes atop the ice. Water surges through the cracks, draining the lakes within hours and sending a deluge thousands of feet through the ice down to the bedrock. The water lubricates the interface between ice and rock, allowing glaciers to slide faster, shed more ice into the ocean, and cause sea levels to rise faster.
Caption from Oceanus online:
Laura Stevens leaps over a stream of meltwater atop the Greenland Ice Sheet. Stevens, a graduate student in the MIT-WHOI Joint Program in Oceanography, was lead author of a new study that identified a surprising trigger mechanism that causes large cracks to split open the bottoms of supraglacial lakes. The study was published in the prestigious scientific journal "Nature".
Caption from Oceanus magazine, Vol. 51, No. 2, front cover image:
On the cover: MIT-WHOI graduate student Laura Stevens leaps over a stream of meltwater atop the Greenland Ice Sheet. Stevens was lead author of a study that identified a surprising mechanism that triggers large cracks to split open the bottoms of supraglacial lakes. See story on Page 20.
Image Of the Day caption:
MIT-WHOI graduate student Laura Stevens leaps over a stream of meltwater on the Greenland Ice Sheet. Stevens was part of team (including WHOI scientists Sara Das, Mark Behn, and Jeff McGuire) that identified a surprising mechanism that triggers large cracks to form in the bottoms of lakes atop the ice. Water surges through the cracks, draining the lakes within hours and sending a deluge thousands of feet through the ice down to the bedrock. The water lubricates the interface between ice and rock, allowing glaciers to slide faster, shed more ice into the ocean, and cause sea levels to rise faster.
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Das_Laura_streamxing2_2013_DSC_0710.jpg
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etaylor: Vetlesen hmark: thesis defense cake decoration for Laura shoughton: to update G&G website efitzpatrick: climate change images for whoi movie screening etaylor: Couse Catalog anangle: mentors and champions flyer etaylor: Next Wave aearly: March 2016 Newsletter jdoucette: Image Of the Day, 02/24/2016 jcook: for presentation adaly: geodynamics adaly: Geodynamics website etaylor: Oceanus magazine, Vol. 51, No. 2, front cover
etaylor: Vetlesen
hmark: thesis defense cake decoration for Laura
shoughton: to update G&G website
efitzpatrick: climate change images for whoi movie screening
etaylor: Couse Catalog
anangle: mentors and champions flyer
etaylor: Next Wave
aearly: March 2016 Newsletter
jdoucette: Image Of the Day, 02/24/2016
jcook: for presentation
adaly: geodynamics
adaly: Geodynamics website
etaylor: Oceanus magazine, Vol. 51, No. 2, front cover
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