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NOAA Cooperative Institutes NOAA Cooperative Institutes
NOAA Cooperative Institutes

The NOAA Cooperative Institutes are academic and non-profit research institutions that demonstrate the highest level of performance and conduct research that supports NOAA's Mission Goals and Strategic Plan. Currently, NOAA supports 17 Cooperative Institutes consisting of 58 universities and research institutions across 23 states and the District of Columbia. This collection consists of documents (technical reports and memorandum, as well as journal articles) that have been produced by these institutes in support of NOAA research through the use of NOAA funding support.

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    Evaluation of the Rapid Refresh Numerical Weather Prediction Model over Arctic Alaska
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    Differing Trends in United States and European Severe Thunderstorm Environments in a Warming Climate
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    Comparisons of Hybrid En3DVar with 3DVar and EnKF for Radar Data Assimilation: Tests with the 10 May 2010 Oklahoma Tornado Outbreak
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    Offshore Wind Speed Estimates from a High-ResolutionRapidly-Updating Numerical Weather Prediction Model Forecast Dataset
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    The Relationship between Equatorial Mixed Rossby–Gravity and Eastward Inertio-Gravity Waves. Part II
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    Use of Power Transform Mixing Ratios as Hydrometeor Control Variables for Direct Assimilation of Radar Reflectivity in GSI En3DVar and Tests with Five Convective Storm Cases
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    The Effect of Climatological Variables on Future UAS-Based Atmospheric Profiling in the Lower Atmosphere
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    Lidar remote sensing of the aquatic environment: invited
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    Balloon-borne radiation measurements demonstrate radiative forcing by water vapor and clouds
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    Evaluation of Near Real-Time Preliminary Tornado Damage Paths
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    Calculation and application of eddy dissipation rate map based on spectrum width data of a S-band radar in Hong Kong
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    Detection of Ground Clutter from Weather Radar Using a Dual-Polarization and Dual-Scan Method
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    Using citizen science reports to evaluate estimates of surface precipitation type
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    Vertical Extent of Thunderstorm Inflows Revealed by Polarimetric Radar
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    Correction: Lee, T. R., et al. On the Use of Rotary-Wing Aircraft to Sample Near-Surface Thermodynamic Fields: Results from Recent Field Campaigns Sensors. 2019, 19(1), 10
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    Evaluation of the Microphysical Assumptions within GPM-DPR Using Ground-Based Observations of Rain and Snow
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    Data-Driven Approaches for Tornado Damage Estimation with Unpiloted Aerial Systems
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    Characteristics of Tropopause Polar Vortices Based on Observations over the Greenland Ice Sheet
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    Evaluation of a Land–Atmosphere Coupling Metric Computed from a Ground-Based Infrared Interferometer
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    Applications of Uncrewed Aerial Vehicles (UAVs) in Winter Precipitation-Type Forecasts
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