
Further Reading
Found 37 results
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The extreme melt across the Greenland ice surface in 2012.
Geophysical Research Letters. 117,
(2012). Evaluation of Operation IceBridge quick‐look snow depth estimates on sea ice.
Geophysical Research Letters. 42(21), 9302-9310.
(2015). Evaluation of Operation IceBridge quick‐look snow depth estimates on sea ice.
Geophysical Research Letters. 42(21), 9302-9310.
(2015). Development and validation of a cloud-gap filled MODIS daily snow-cover product.
Remote Sensing of Environment. 114, 496-503.
(2010). Detection of earlier snowmelt in the Wind River Range, Wyoming, using Landsat imagery.
Remote Sensing of Environment. 162, 45-54.
(2015). Current Climate Trends in the Arctic.
WIREs Climate Change, Wiley Interdisciplinary Reviews (WIREs).
(2014). A comparison of snow depth on sea ice retrievals using airborne atlimeters and an AMSR-E simulator..
IEEE Transactions on Geoscience & Remote Sensing. 50(8), 3027-3040.
(2012). Comparison of satellite-derived ice and snow surface temperatures over Greenland from MODIS, ASTER, ETM+ and in-situ observations.
Remote Sensing of Environment. 112(10), 3739-3749.
(2008). Comparison of satellite-derived ice and snow surface temperatures over Greenland from MODIS, ASTER, ETM+ and in-situ observations.
Remote Sensing of Environment. 112(10), 3739-3749.
(2008).
(2016). Analysis of snow bidirectional reflectance from ARCTAS spring-2008 campaign.
Atmos. Chem. Phys. 10, 4359–4375.
(2010). Accuracy assessment of the MODIS snow-cover products.
Hydrological Processes.
(2007).