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Aerodynamics / Ocean currents / James C. McWilliams / Chemical engineering / Vortex / Turbulence / Vorticity / Eddy / Planetary boundary layer / Fluid dynamics / Fluid mechanics / Dynamics


Document Date: 2013-09-19 14:03:35


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City

Dordrecht / New York / Zabusky / Washington / D.C. / Canberra / Amsterdam / New York City / Woodbury / /

Company

National Academy Press / IBM / Cambridge University Press / Plenum Press / Norton / ACM Press / World Scientific / Elsevier Science Publishers B.V. / J. Comp / Elsevier Press / /

Country

Netherlands / Australia / Singapore / /

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Facility

M.M. Hall / Planetary Physics University of California / Oceanic Sciences Institute of Geophysics / American Institute of Physics / /

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IndustryTerm

tropical cloud systems / reference solution / model solutions / dimensional point-vortex systems / multigrid solution / kinetic energy correspondence / largescale tropical cloud systems / /

NaturalFeature

Atlantic Ocean / ocean J.C.J. Nihoul / ocean Hydrodynamics / ocean B.M Jamart / North Atlantic Ocean / Northwestern Atlantic Ocean / Sea Res / /

OperatingSystem

Fermi / /

Organization

Cambridge University / American Institute of Physics / Atmospheric and Oceanic Sciences Institute of Geophysics / Institute for Mathematics / NCAR-GTP Summer School / Geophysics and Planetary Physics University / U.S. National Congress / PUBLICATIONS James C. McWilliams Department of Atmospheric / University of California / Los Angeles / International School / /

Person

James C. McWilliams / G.R. Flierl / V / Enrico Fermi / C. Van Leer / R. Harcourt / Bush / H.T. Rossby / /

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Position

General / NCAR Climate System Model global ocean component / air and sea model for the Tropical Pacific / Marshall / /

ProvinceOrState

New Jersey / New York / /

Region

North Atlantic / western North Atlantic / /

Technology

Geophysics / simulation / /

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