
Further Reading
Found 37 results
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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). 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). Changing Arctic snow cover: a review of recent developments and assessment of future needs for observations, modelling and impacts.
Ambio. 45, 516-537.
(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). Terrestrial Snow.
Encyclopedia of Remote Sensing: Springer Reference .
(2014). Global Snow Cover.
Satellite Image Atlas of Glaciers (Williams, R.S., Jr. and J.G. Ferrigno, eds.) USGS Professional Paper 1386-A..
(2012). Current Climate Trends in the Arctic.
WIREs Climate Change, Wiley Interdisciplinary Reviews (WIREs).
(2014).