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(20 out of 182)
Title Start date End date Organisation Department Type of project
Collaborative Research: Quantifying microbial controls on the annual cycle of methane and oxygen within the ultraoligotrophic Central Arctic during MOSAiC 01/10/2019 31/12/2019 University of California University of California, San Diego, Department ARMAP/NSF
Collaborative Research: The Role of Planktonic Lower Trophic Levels in Carbon and Nitrogen Transformations in the Central Arctic, a MOSAiC Proposal 01/10/2019 31/12/2019 Woods Hole Oceanographic Institute Woods Hole Oceanographic Institute, Department ARMAP/NSF
Parameterizing sub-grid Arctic snow-on-sea-ice processes in Earth System Models using MOSAiC field observations and realistic-resolution process models 16/12/2019 31/12/2019 Colorado State University Colorado State University, dept ARMAP/NSF
Collaborative Research: Thermodynamic and Dynamic Drivers of the Arctic Sea Ice Mass Budget at MOSAiC 01/01/2020 31/10/2020 University of Colorado Boulder University of Colorado Boulder, Department ARMAP/NSF
Collaborative Research: Quantifying microbial controls on the annual cycle of methane and oxygen within the ultraoligotrophic Central Arctic during MOSAiC 01/01/2020 31/10/2020 University of California University of California, San Diego, Department ARMAP/NSF
Collaborative Research: The Role of Planktonic Lower Trophic Levels in Carbon and Nitrogen Transformations in the Central Arctic, a MOSAiC Proposal 01/01/2020 31/10/2020 Woods Hole Oceanographic Institute Woods Hole Oceanographic Institute, Department ARMAP/NSF
Collaborative Research: Refreezing in the firn of the Greenland ice sheet: Spatiotemporal variability and implications for ice sheet mass balance 01/01/2020 31/12/2020 Rutgers University New Brunswick Rutgers University New Brunswick, Department ARMAP/NSF
Collection and Analysis of GEOSummit Aerosols 01/01/2020 31/12/2020 University of California University of California, Davis, dept. ARMAP/NSF
Collaborative Research: Quantifying Heat/Mass Structure and Fluxes Through the Full Thickness of Greenland's Percolation Zone 01/01/2020 31/12/2020 University of Montana University of Montana, Department ARMAP/NSF
Collaborative Research: Quantifying Heat/Mass Structure and Fluxes Through the Full Thickness of Greenland's Percolation Zone 01/01/2020 31/12/2020 University of Montana University of Montana, Department ARMAP/NSF
Collaborative Research: Quantifying Heat/Mass Structure and Fluxes Through the Full Thickness of Greenland's Percolation Zone 01/01/2020 31/12/2020 University of Montana University of Montana, Department ARMAP/NSF
Collaborative Research: Quantifying Heat/Mass Structure and Fluxes Through the Full Thickness of Greenland's Percolation Zone 01/01/2020 31/12/2020 University of Montana University of Montana, Department ARMAP/NSF
Collaborative Research: Quantifying Heat/Mass Structure and Fluxes Through the Full Thickness of Greenland's Percolation Zone 01/01/2020 31/12/2020 University of Wyoming University of Wyoming, Department ARMAP/NSF
Collaborative Research: Quantifying Heat/Mass Structure and Fluxes Through the Full Thickness of Greenland's Percolation Zone 01/01/2020 31/12/2020 University of Wyoming University of Wyoming, Department ARMAP/NSF
Collaborative Research: Quantifying Heat/Mass Structure and Fluxes Through the Full Thickness of Greenland's Percolation Zone 01/01/2020 31/12/2020 University of Wyoming University of Wyoming, Department ARMAP/NSF
Collaborative Research: Thermodynamic and Dynamic Drivers of the Arctic Sea Ice Mass Budget at MOSAiC 01/01/2020 31/12/2020 Oregon State University Oregon State University, College of Earth, Ocean and Atmospheric Sciences ARMAP/NSF
Collaborative Research: Thermodynamic and Dynamic Drivers of the Arctic Sea Ice Mass Budget at MOSAiC 01/01/2020 31/12/2020 Naval Postgraduate School Naval Postgraduate School, dept. ARMAP/NSF
Collaborative Research: Thermodynamic and Dynamic Drivers of the Arctic Sea Ice Mass Budget at MOSAiC 01/01/2020 31/12/2020 Dartmouth College Dartmouth College, Department ARMAP/NSF
Collaborative Research: Improving the Prediction of Sea Ice through Targeted Study of Poorly Parameterized Sea Ice Processes at MOSAiC and Responsive Model Development 01/01/2020 31/12/2020 University of Washington School of Oceanography ARMAP/NSF
Collaborative Research: Improving the Prediction of Sea Ice through Targeted Study of Poorly Parameterized Sea Ice Processes at MOSAiC and Responsive Model Development 01/01/2020 31/12/2020 National Center for Atmospheric Research National Center for Atmospheric Research, Department ARMAP/NSF
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