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Book
Heat-flux sensor calibration
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Year: 2004 Publisher: Gaithersburg, Md. : U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, Physics Laboratory, Optical Technology Division,

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Book
Heat-flux sensor calibration
Authors: ---
Year: 2004 Publisher: Gaithersburg, Md. : U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, Physics Laboratory, Optical Technology Division,

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An analysis of new techniques for radiometric correction of LANDSAT-4 thematic mapper images
Authors: --- --- --- ---
Year: 1983 Publisher: Lanham, MD : Greenbelt, Maryland : Research and Data Systems, Inc. ; National Aeronautics and Space Administration, Goddard Space Flight Center,

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Solar Radiation, Modelling and Remote Sensing
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ISBN: 303921005X 3039210041 Year: 2019 Publisher: MDPI - Multidisciplinary Digital Publishing Institute

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Accurate solar radiation knowledge and its characterization on the Earth’s surface are of high interest in many aspects of environmental and engineering sciences. Modeling of solar irradiance from satellite imagery has become the most widely used method for retrieving solar irradiance information under total sky conditions, particularly in the solar energy community. Solar radiation modeling, forecasting, and characterization continue to be broad areas of study, research, and development in the scientific community. This Special Issue contains a small sample of the current activities in this field. Both the environmental and climatology community, as the solar energy world, share a great interest in improving modeling tools and capabilities for obtaining more reliable and accurate knowledge of solar irradiance components worldwide. The work presented in this Special Issue also remarks on the significant role that remote sensing technologies play in retrieving and forecasting solar radiation information.


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Sea Surface Salinity Remote Sensing
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ISBN: 3039210777 3039210769 Year: 2019 Publisher: MDPI - Multidisciplinary Digital Publishing Institute

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This Special Issue gathers papers reporting research on various aspects of remote sensing of Sea Surface Salinity (SSS) and the use of satellite SSS in oceanography. It includes contributions presenting improvements in empirical or theoretical radiative transfer models; mitigation techniques of external interference such as RFI and land contamination; comparisons and validation of remote sensing products with in situ observations; retrieval techniques for improved coastal SSS monitoring, high latitude SSS and the assessment of ocean interactions with the cryosphere; and data fusion techniques combining SSS with sea surface temperature (SST). New instrument technology for the future of SSS remote sensing is also presented.

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