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Snow quenches our thirst, cools our planet
2012
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Foster, J.L.,
Skofronick-Jackson, G.,
Meng, H.,
Wang, J.R.,
Riggs, G.,
Kocin, P.J.,
Johnson, B.T.,
Cohen, J.,
Hall, D.K.,
&
Nghiem, S.V.
(2012).
Passive Microwave Remote Sensing of the Historic February 2010 Snow Storms in the Middle Atlantic Region of the U.S..
Hydrol. Processes,
26(22),
3459-3471.
10.1002/hyp.8418.
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Hall, D.K.,
Comiso, J.C.,
DiGirolamo, N.E.,
Shuman, C.A.,
Key, J.R.,
&
Koenig, L.S.
(2012).
A Satellite-Derived Climate-Quality Data Record of the Clear-Sky Surface Temperature of the Greenland Ice Sheet.
Journal of Climate,
25(14),
4785-4798.
10.1175/JCLI-D-11-00365.1.
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(2012).
Global Snow Cover.
In Williams, R.S., Jr. and J.G. Ferrigno (Ed.),
Satellite Image Atlas of Glaciers
(pp. 1386-A).
USGS Professional Paper.
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(2012).
Microwave Properties of Ice-Phase Hydrometeors for Radar and Radiometers: Sensitivity to Model Assumptions.
J. Appl. Meteor. Climatol,
51(12),
2152–2171.
10.1175/JAMC-D-11-0138.1.
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Nghiem, S.V.,
Hall, D.K.,
Mote, T.L.,
Tedesco, M.,
Albert, M.,
Keegan, K.,
Shuman, C.A.,
DiGirolamo, N.E.,
&
Neumann, G.
(2012).
The extreme melt across the Greenland ice surface in 2012.
Geophysical Research Letters,
117,
10.1029/2012GL053611.
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(2012).
Dust radiative forcing in snow of the Upper Colorado River Basin: 1. A 6 year record of energy balance, radiation, and dust concentrations.
Water Resources Research,
48(7),
n/a - n/a.
10.1029/2012WR011985.
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(2012).
Dust radiative forcing in snow of the Upper Colorado River Basin: 2. Interannual variability in radiative forcing and snowmelt rates.
Water Resources Research,
48(7),
n/a - n/a.
10.1029/2012WR011986.
2011
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(2011).
Hourly simulations of the microwave brightness temperature of seasonal snow in Quebec, Canada, using a coupled snow evolution-emission model.
Remote Sensing of Environment,
115(8),
1966-1977.
10.1016/j.rse.2011.03.019.
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Brucker, L.,
Picard, G.,
Arnaud, L.,
Barnola, J.M.,
Schneebali, M.,
Brunjail, H.,
Lefebvre, E.,
&
Fily, M.
(2011).
Modeling time series of microwave brightness temperature at Dome C, Antarctica, using vertically resolved snow temperature and microstructure measurements.
Journal of Glaciology,
57(201),
171-182.
10.3189/002214311795306736.
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(2011).
Large-scale surveys of snow depth on Arctic sea ice from Operation IceBridge.
Geophysical Research Letters,
38,
10.1029/2011GL049216.
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(2011).
Observations of recent Arctic sea ice volume loss and its impact on ocean‐atmosphere energy exchange and ice production.
Journal of Geophysical Research,
116,
10.1029/2010JC006235.
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Markus, T.,
Massom, R.,
Worby, T.,
Lytle, V.,
Kurtz, N.,
&
Maksym, T.
(2011).
Freeboard, snow depth, and sea ice roughness in East Antarctica from in-situ and multiple satellite data.
Annals of Glaciology,
52(57),
242-248.
10.3189/172756411795931570.
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(2011).
Satellite remote sensing of blowing snow properties over Antarctica.
J. Geophys. Res,
116(D16123),
10.1029/2011JD015828.
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(2011).
Surface and Atmospheric Contributions to Passive Microwave Brightness Temperatures for Falling Snow Events.
J. Geophys. Res,
116(D02213),
10.1029/2010JD014438.
2010
-
(2010).
Snow grain size profile deduced from microwave snow emissivities in Antarctica.
Journal of Glaciology,
56(197),
514-524.
10.3189/002214310792447806.
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(2010).
Development and validation of a cloud-gap filled MODIS daily snow-cover product.
Remote Sensing of Environment,
114,
496-503.
10.1016/j.rse.2009.10.007.
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Langlois, A.,
Royer, A.,
Montpetit, B.,
Picard, G.,
Brucker, L.,
Arnaud, L.,
Harvey-Collard, P.,
Goïta, K.,
&
Fily, M.
(2010).
On the relationship between snow grain morphology and in-situ near infrared calibrated reflectance photographs.
Cold Regions Science and Technology,
61(1),
34-42.
10.1016/j.coldregions.2010.01.004.
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Lyapustin, A.,
Gatebe, C.K.,
Kahn, R.,
Brandt, R.,
Redemann, J.,
Russell, P.,
King, M.D.,
Pedersen, C.A.,
Gerland, S.,
Poudyal, R.,
Marshak, A.,
Wang, Y.,
Schaaf, C.,
Hall, D.,
&
Kokhanovsky, A.
(2010).
Analysis of snow bidirectional reflectance from ARCTAS spring-2008 campaign.
Atmos. Chem. Phys,
10,
4359–4375.
10.5194/acp-10-4359-2010.
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(2010).
Uncertainties in ice sheet altimetry from a space-borne 1064-nm single channel lidar due to undetected thin clouds.
IEEE Trans. Geos. Remote Sens,
48,
250-259.
2009
-
(2009).
Seasonal Snow Extent and Snow Mass in South America Using SMMR and SSM/I Passive Microwave Data (1979-2003).
Remote Sensing of Environment,
113,
291-305.
10.1016/j.rse.2008.09.010.
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Kurtz, N.T.,
Markus, T.,
Cavalieri, D.J.,
Sparling, L.C.,
Krabill, W.,
Gasiewski, A.J.,
&
Sonntag, J.G.
(2009).
Estimation of sea ice thickness distributions through the combination of snow depth and satellite laser altimetry data.
Journal of Geophysical Research,
10.1029/2009JC005292.
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Lacroix, P.,
Legrésy, B.,
Remy, F.,
Blarel, F.,
Picard, G.,
&
Brucker, L.
(2009).
Rapid change of snow surface properties at Vostok, East Antarctica, revealed by altimetry and radiometry.
Remote Sensing of Environment,
113(12),
2633-2641.
10.1016/j.rse.2009.07.019.
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Langlois, A.,
Brucker, L.,
Kohn, J.,
Royer, A.,
Derksen, C.,
Cliche, P.,
Picard, G.,
Willemet, J.M.,
&
Fily, M.
(2009).
Simulation of snow water equivalent (SWE) using thermodynamic snow models in Québec, Canada.
Journal of Hydrometeorology,
10(6),
1447-1463.
10.1175/2009JHM1154.1.
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(2009).
Modeling time series of microwave brightness temperature in Antarctica.
Journal of Glaciology,
55(191),
10.3189/002214309788816678.
2008
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Kim, M.J.,
Weinman, J.A.,
Olson, W.S.,
Chang, D.E.,
Skofronick-Jackson, G.,
&
Wang, J.R.
(2008).
A physical model to estimate snowfall over land using AMSU-B observations.
J. Geophys. Res,
113(D9),
10.1029/2007JD008589.