Arctic sea ice thickness loss determined using subsurface, aircraft, and satellite observations
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The Arctic-Subarctic sea ice system is entering a seasonal regime: Implications for future Arctic amplificationHow well must climate models agree with observations?The frequency and extent of sub-ice phytoplankton blooms in the Arctic Ocean.Increased Arctic sea ice drift alters adult female polar bear movements and energetics.Processes controlling surface, bottom and lateral melt of Arctic sea ice in a state of the art sea ice model.Arctic Climate Change, Economy and Society (ACCESS): Integrated perspectives.Arctic sea-ice decline weakens the Atlantic Meridional Overturning CirculationArctic ice managementThe Impact of Geophysical Corrections on Sea-Ice Freeboard Retrieved from Satellite AltimetryImpact of snow accumulation on CryoSat-2 range retrievals over Arctic sea ice: An observational approach with buoy dataResistance of Arctic phytoplankton to ocean acidification and enhanced irradianceComparison of Arctic Sea Ice Thickness from Satellites, Aircraft, and PIOMAS DataA Meteoric Water Budget for the Arctic OceanIce and Snow Thickness Variability and Change in the High Arctic Ocean Observed by In Situ MeasurementsAssessing climate impacts and risks of ocean albedo modification in the ArcticDirect determination of the air-sea CO2 gas transfer velocity in Arctic sea ice regionsRelationships between Arctic sea ice drift and strength modelled by NEMO-LIM3.6Winter to summer oceanographic observations in the Arctic Ocean north of SvalbardTurbulent heat and momentum fluxes in the upper ocean under Arctic sea iceEffects of sea-ice and biogeochemical processes and storms on under-ice water f CO2 during the winter-spring transition in the high Arctic Ocean: Implications for sea-air CO2 fluxesObservations of flooding and snow-ice formation in a thinner Arctic sea-ice regime during the N-ICE2015 campaign: Influence of basal ice melt and stormsA comparison of the two Arctic atmospheric winter states observed during N-ICE2015 and SHEBASnow contribution to first-year and second-year Arctic sea ice mass balance north of SvalbardWinter snow conditions on Arctic sea ice north of Svalbard during the Norwegian young sea ICE (N-ICE2015) expedition
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Arctic sea ice thickness loss determined using subsurface, aircraft, and satellite observations
description
im Februar 2015 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
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наукова стаття, опублікована в лютому 2015
@uk
name
Arctic sea ice thickness loss ...... ft, and satellite observations
@en
Arctic sea ice thickness loss ...... ft, and satellite observations
@nl
type
label
Arctic sea ice thickness loss ...... ft, and satellite observations
@en
Arctic sea ice thickness loss ...... ft, and satellite observations
@nl
prefLabel
Arctic sea ice thickness loss ...... ft, and satellite observations
@en
Arctic sea ice thickness loss ...... ft, and satellite observations
@nl
P356
P1433
P1476
Arctic sea ice thickness loss ...... ft, and satellite observations
@en
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A. Schweiger
R. Lindsay
P304
P356
10.5194/TC-9-269-2015
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2015-02-10T00:00:00Z