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Synergy of active and passive satellite microwave data for the study of first-year sea ice in the Caspian and Aral seas.

, , , , , , , and . IEEE Trans. Geosci. Remote. Sens., 42 (10): 2170-2176 (2004)

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Synergy of active and passive satellite microwave data for the study of first-year sea ice in the Caspian and Aral seas., , , , , , , and . IEEE Trans. Geosci. Remote. Sens., 42 (10): 2170-2176 (2004)Study of the Penetration Bias of ENVISAT Altimeter Observations over Antarctica in Comparison to ICESat Observations., , and . Remote. Sens., 6 (10): 9412-9434 (2014)Estimating terrestrial snow depth with the TOPEX-Poseidon altimeter and radiometer., , , , and . IEEE Trans. Geosci. Remote. Sens., 40 (10): 2162-2169 (2002)Antarctica volume change from 10 years of Envisat altimetry., and . IGARSS, page 1848-1851. IEEE, (2012)Antarctic Ice Sheet and Radar Altimetry: A Review., and . Remote Sensing, 1 (4): 1212-1239 (2009)Inter-Annual Variability in the Antarctic Ice Sheets Using Geodetic Observations and a Climate Model., , and . Remote. Sens., 13 (11): 2199 (2021)Variations of sea ice extent in the Caspian and Aral seas derived from combination of active and passive satellite microwave data., , , , , , , and . IGARSS, page 2808-2810. IEEE, (2003)The Benefits of the Ka-Band as Evidenced from the SARAL/AltiKa Altimetric Mission: Scientific Applications., , , , , , , , , and 14 other author(s). Remote. Sens., 10 (2): 163 (2018)On the Azimuthally Anisotropy Effects of Polarization for Altimetric Measurements., , and . IEEE Trans. Geosci. Remote. Sens., 44 (11-2): 3289-3296 (2006)Snow Facies Over Ice Sheets Derived From Envisat Active and Passive Observations., , , and . IEEE Trans. Geosci. Remote. Sens., 46 (11): 3694-3708 (2008)