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Clarifications on the "Comparison Between SMOS, VUA, ASCAT, and ECMWF Soil Moisture Products Over Four Watersheds in U.S."., , , , , , , , , and 7 other author(s). IEEE Trans. Geosci. Remote. Sens., 52 (3): 1901-1906 (2014)Achieving Consistency of Software Updates against Strong Attackers., , and . CECC, page 6:1-6:6. ACM, (2019)Analyzing the Vegetation Parameterization in the TU-Wien ASCAT Soil Moisture Retrieval., , , , , and . IEEE Trans. Geosci. Remote. Sens., 54 (6): 3513-3531 (2016)On static execution-time analysis.. Saarland University, Saarbrücken, Germany, (2019)Extension of a linear optimal control strategy for HEV., , , and . ECC, page 154-159. IEEE, (2015)Open source toolbox and web application for soil moisture validation., , , , , and . IGARSS, page 3331-3333. IEEE, (2014)Identification of soil moisture retrieval errors: Learning from the comparison of SMOS and ASCAT., , , and . IGARSS, page 3795-3798. IEEE, (2012)SM2RAIN-CCI: a new global long-term rainfall data set derived from ESA CCI soil moisture, , , , , , , , , and . Earth System Science Data, 10 (1): 267-280 (2018)Sentinel-1 Cross Ratio and Vegetation Optical Depth: A Comparison over Europe., , , , , , , and . Remote. Sens., 12 (20): 3404 (2020)Torque control of a diesel engine by an eigenpressure based approach., , , and . ECC, page 434-439. IEEE, (2013)