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Validation of CryoSat-2 SARIn Data over Austfonna Ice Cap Using Airborne Laser Scanner Measurements.

, , , , , , , , , and . Remote Sensing, 10 (9): 1354 (2018)

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Effects of surface roughness on sea ice freeboard retrieval with an Airborne Ku-Band SAR radar altimeter., , , and . IGARSS, page 3126-3129. IEEE, (2010)Synergistic Use of Single-Pass Interferometry and Radar Altimetry to Measure Mass Loss of NEGIS Outlet Glaciers between 2011 and 2014., , , , and . Remote Sensing, 12 (6): 996 (2020)Measurements and Modeling of Optical-Equivalent Snow Grain Sizes under Arctic Low-Sun Conditions., , , , , , , , , and 4 other author(s). Remote. Sens., 13 (23): 4904 (2021)Validation of CryoSat-2 SARIn Data over Austfonna Ice Cap Using Airborne Laser Scanner Measurements., , , , , , , , , and . Remote Sensing, 10 (9): 1354 (2018)GNSS-IR Measurements of Inter Annual Sea Level Variations in Thule, Greenland from 2008-2019., , , , and . Remote. Sens., 13 (24): 5077 (2021)High-Resolution Mass Trends of the Antarctic Ice Sheet through a Spectral Combination of Satellite Gravimetry and Radar Altimetry Observations., , , and . Remote Sensing, 11 (2): 144 (2019)A Spatially Adjusted Elevation Model in Dronning Maud Land, Antarctica, Based on Differential SAR Interferometry., , , and . IEEE Trans. Geoscience and Remote Sensing, 47 (8-1): 2501-2509 (2009)The recovery ice stream: Synergy of satellite and airborne remote sensing for flow dynamics., , , , and . IGARSS, page 7098-7100. IEEE, (2016)Characteristics of CryoSat-2 signals over multi-year and seasonal sea ice., , , , , and . IGARSS, page 220-223. IEEE, (2013)