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Publications and Papers

Studying Multi-scale/Multi-physics Processes in Complex Terrain Environments for Improved Numerical Weather Prediction

Top-Down Estimates of NOx and CO Emissions From Washington, D.C.-Baltimore During the WINTER Campaign

https://doi.org/10.1029/2018JD028539

The MATERHORN Experiments - Toward Improved Numerical Weather Prediction Complex Terrain Environments

Future directions in hydrologic measurement

Methane Emissions From the Baltimore-Washington Area Based on Airborne Observations: Comparison to Emissions Inventories

https://doi.org/10.1029/2018JD028851

Urbanization and Climate Change in Urban Metropolises

ClNO2 Yields From Aircraft Measurements During the 2015 WINTER Campaign and Critical Evaluation of the Current Parameterization

https://doi.org/10.1029/2018JD029358

From Laboratory to Climate: Understanding of Multi-scale Processes through Observations

The Battle of Fluids: Air, Water and Climate

The immersed boundary method: enabling atmospheric simulations over highly complex terrain

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This material is based upon work supported by the NSF National Center for Atmospheric Research, a major facility sponsored by the U.S. National Science Foundation and managed by the University Corporation for Atmospheric Research. Any opinions, findings and conclusions or recommendations expressed in this material do not necessarily reflect the views of the U.S. National Science Foundation.