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Michele L. Nordeen

Researcher at Analytical Services

Publications -  24
Citations -  312

Michele L. Nordeen is an academic researcher from Analytical Services. The author has contributed to research in topics: Geostationary Operational Environmental Satellite & Cloud cover. The author has an hindex of 8, co-authored 24 publications receiving 289 citations. Previous affiliations of Michele L. Nordeen include Langley Research Center.

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CERES Edition-2 Cloud Property Retrievals Using TRMM VIRS and Terra and Aqua MODIS Data—Part II: Examples of Average Results and Comparisons With Other Data

TL;DR: Cloud properties were retrieved by applying the Clouds and Earth's Radiant Energy System (CERES) project Edition-2 algorithms to 3.5 years of Tropical Rainfall Measuring Mission Visible and Infrared Scanner data and 5.5 and 8 years of MODerate Resolution Imaging Spectroradiometer (MODIS) data from Aqua and Terra.
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Contrail Frequency over the United States from Surface Observations

TL;DR: In this article, the mean hourly, monthly, and annual frequencies of daytime contrail occurrence are estimated using 2 yr of observations from surface observers at military installations scattered over the continental United States during both winter and early spring and are seen least often during the summer.
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Satellite observations of cloud plumes generated by Nauru

TL;DR: In this paper, a cloud plume is generated by the interaction of low-level easterly flow and diurnal surface heating on the island of Nauru in the tropical Pacific.
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Aerosol variability, synoptic‐scale processes, and their link to the cloud microphysics over the northeast Pacific during MAGIC

TL;DR: In this article, a shipborne aerosol measurements collected from October 2012 to September 2013 along 36 transects between the port of Los Angeles, California (337°N, 1182°) and Honolulu, Hawaii (213°N and 1578°W) during the Marine ARM GPCI (Global Energy and Water Cycle Experiment (GEWEX)-Cloud System Study (GCSS)-Pacific Cross-section Intercomparison) Investigation of Clouds campaign are analyzed to determine the circulation patterns that modulate the synoptic and monthly variability of cloud condensation nucle