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The challenge
Projects
About
#
People
Partners
For business
For schools
For stakeholders
News
#
Press releases
Blogs
Publications
Contact
#
Press
Projects
Project objectives
1-Understand and attribute change
2-Quantify Arctic biogeochemical cycles
3-Reduce uncertainty in predictive models
4-Assess risk of Arctic Ocean landslides
Partners
University of Aberdeen
Bangor University
British Antarctic Survey (BAS)
British Geological Survey (BGS)
Centre for Ecology & Hydrology (CEH)
University of Cambridge
University of Dundee
Durham University
University of East Anglia
University of Edinburgh
University of Exeter
Heriot-Watt University
Imperial College London
University of Leeds
Loughborough University
University of Manchester
National Oceanography Centre
University of Nottingham
Office of Naval Research
University of Oxford
University of Portsmouth
University of Reading
Royal Holloway, University of London
University of Sheffield
University of Southampton
University of Stirling
University of Sussex
University College London
University of Ulster
University of York
Map
List
Grid
Aerosol cloud coupling and climate interactions in the Arctic (ACCACIA)
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Arctic Predictability and Prediction on Seasonal to Inter-annual Timescales (APPOSITE)
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Carbon Cycling Linkages to Permafrost Systems (CYCLOPS)
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Hydrological Controls on Carbon Cycling and Greenhouse Gas Budgets (HYDRA)
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Lakes and the Arctic Carbon Cycle (LAC)
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Landslide-Tsunami
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Methane and other Greenhouse Gases in the Arctic: Measurements, Process Studies and Modelling (MAMM)
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Submarine Estimates of Arctic Turbulence Spectra (SEATS)
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The Environment of the Arctic: Climate, Ocean and Sea Ice (TEA-COSI)
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Arctic methane hydrates and climate change
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Canadian Archipelago Oceanography
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Effects of a warming climate on the key organic carbon cycle processes in the Eurasian Arctic
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Is the Arctic methane budget changing?
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The role of atmospheric, ice and oceanic interactions in the marginal ice zone (MIZ)
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Wave-ice interaction and the marginal ice zone (MIZ-WAVE)
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