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Rapid loss of firn pore space accelerates 21st century Greenland mass loss
Mass loss from the two major ice sheets and their contribution to global sea level rise is accele...
JH van Angelen, JTM Lenaerts, MR van den Broeke, X Fettweis, E van Meijgaard | Status: published | Journal: Geophys. Res. Lett. | Volume: 40 | Year: 2013 | First page: 2109 | Last page: 2113 | doi: 10.1002/grl.50490
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The effect of temporal variations in the surface mass balance and temperature-inversion strength on the interpretation of ice-core signals
The proxy for temperature (delta-signal) in ice cores is stored in the snow/ice during precipitat...
NPM van Lipzig, E van Meijgaard, J Oerlemans | Status: published | Journal: Journal of Glaciology | Volume: 48 | Year: 2002 | First page: 611 | Last page: 621
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Climate change scenarios: comparisons of paleoreconstructions with recent temperature change
Paleoclimatic reconstructions for the Mid-Holocene, Eemian, Mid-Pliocene and Last Glacial Maximum...
MV Shabalova, GP Können | Status: published | Journal: Climatic Change | Year: 1995 | First page: 409 | Last page: 428
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Towards monitoring the englacial fracture state using virtual-reflector seismology
In seismology, coda wave interferometry (CWI) is an effective tool to monitor time-lapse changes ...
F Lindner, C Weemstra, F Walter, C Hadziioannou | Journal: Geophysical Journal International | Volume: 214 | Year: 2018 | First page: 825 | Last page: 844 | doi: https://doi.org/10.1093/gji/ggy156
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Revisiting Greenland Ice Sheet Mass Loss Observed by GRACE
In this paper we discuss a new method for determining mass
time series for 16 hydrological basins...
EJO Schrama, B Wouters | Status: published | Journal: J. Geophys. Res. | Volume: 116 | Year: 2011 | First page: B02407 | doi: 10.1029/2009JB006847
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