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A Physical/Optical Model for Atmospheric Aerosols with Application to Visibility Problems
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Tsay, S.-C.1
Stephens, G.L.2
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The calibration and validation of SeaWiFS data
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Retrieval of water-leaving radiance and aerosol optical thickness over the oceans with Sea-WiFS: A preliminary algorithm
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New ocean color algorithm: Simultaneous retrieval of aerosol optical properties and chlorophyll concentrations
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to be published
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K. Stamnes, W. Li, B. Yan, A. Barnard, W. S. Pegau, and J. J. Stamnes, “New ocean color algorithm: simultaneous retrieval of aerosol optical properties and chlorophyll concentrations,” Appl. Opt. (to be published).
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Inherent optical properties of case I waters: A complete model suitable for use in radiative transfer computations
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W. Li and K. Stamnes, “Inherent optical properties of case I waters: a complete model suitable for use in radiative transfer computations,” J. Geophys. Res., submitted for publication.
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J. Geophys. Res
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Li, W.1
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Monte Carlo and discrete ordinate simulations of irradiances in the coupled atmosphere-ocean system
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K. I. Gjerstad, J. J. Stamnes, B. Hamre, B. Yan, and K. Stamnes, “Monte Carlo and discrete ordinate simulations of irradiances in the coupled atmosphere-ocean system,” Appl. Opt., submitted for publication.
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Hamre, B.3
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Ocean color chlorophyll algorithm for SeaWiFS
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J. E. O’Reilly, S. Maritorena, B. G. Mitchell, D. A. Siegel, K. L. Carder, S. A. Garver, M. Kahru, and C. McClain, “Ocean color chlorophyll algorithm for SeaWiFS,” J. Geophys. Res. 103, 24937-24953 (1998).
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O’reilly, J.E.1
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Garver, S.A.6
Kahru, M.7
Mc Clain, C.8
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