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The top documents tagged [radiation balance]
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radiation balance
Model parameter inversion against Eddy Covariance Data using a Monte Carlo Technique Jens Kattge Wolfgang Knorr Christian Wirth MPI for Biogeochemistry,
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Use of Satellite Earth Observations in Operational Meteorology 1. The state of EO use in NWP 2. Challenges and current priorities 3. Suggestions for the.
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CAVIAR – Continuum Absorption by Visible and Infrared Radiation and its Atmospheric Relevance PI: Keith Shine Department of Meteorology, University of.
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© University of Reading 20091 Improved understanding of how rainfall responds to a warming world Richard Allan Environmental Systems.
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Current Changes in the Tropical Precipitation and Energy Richard P. Allan Department of Meteorology, University of Reading Thanks to Brian Soden, Viju.
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© University of Reading 2009 EUMETSAT 2009 1 Monitoring changes in precipitation and radiative energy using satellite data and.
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© University of Reading 2009 1 Monitoring and understanding current changes in the global energy & water cycles Richard Allan.
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Implications of trends and variability in low-level water vapour Richard P. Allan Department of Meteorology/NCAS climate, University of Reading Thanks.
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The atmospheric hydrological cycle and climate feedbacks: recent advances Richard P. Allan Department of Meteorology, University of Reading Thanks to Brian.
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Water Vapor and Lapse Rate Feedbacks Neil Gordon ESP Seminar April 14, 2006.
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Ralf Siebenmorgen Köln 2012 ISM dust model Monte Carlo dust radiative transfer Proto-planetary disks: ring-like structures PAH destruction in proto-planetary.
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Chapter 15 Section 2 Heating of the Atmosphere. Energy in the Atmosphere Radiation is the transfer of energy as electromagnetic waves 50% of the sun’s.
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