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Computational science / Atmospheric model / Chaos theory / Climate model / Dynamical system / James C. McWilliams / Weather forecasting / Computer simulation / Attractor / Atmospheric sciences / Science / Ethology


Document Date: 2007-11-02 14:03:28


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City

Washington / DC / Cambridge / Cambrigde / Oxford / /

Company

Oxford Univ Press / Natl Acad Press / Simmons / Cambridge Univ Press / /

Country

Netherlands / United Kingdom / /

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Event

Environmental Issue / /

Facility

Institute of Geophysics / Alex Hall / University of California / /

IndustryTerm

deterministic chaotic dynamical systems / well conceived algorithms / axiomatic mathematical systems / highresolution satellite images / foreseeable computer technology / scientific tools / chaotic dynamical systems / heterogeneous media / component discrete algorithms / Internet-shared computations / advection algorithm / dynamical systems / energy / model solutions / /

NaturalFeature

Dyn Atmos Oceans / Gulf Stream / Ocean Simulations / /

Organization

National Research Council / Nuclear Regulatory Commission / Climate Research Board / Cambridge Univ / Assembly of Mathematical and Physical Sciences / Institute of Geophysics and Planetary Physics / James C. McWilliams* Department of Atmospheric and Oceanic Sciences / University of California / Los Angeles / Scientific Foundation for Atmosphere / National Academy of Sciences / Assembly of Mathematical / /

Person

James C. McWilliams / Prog Phys / Bjorn Stevens / Woods Hole / Annalisa Bracco / David Neelin / Leonard Smith / /

Position

Author / Emperor / National Research Counsel / scientist / /

ProvinceOrState

California / Massachusetts / /

RadioStation

Paiva AM / /

Region

North Atlantic / /

Technology

Geophysics / radiation / alternative algorithms / fluid dynamics / simulation / optimistically foreseeable computer technology / well conceived algorithms / advection algorithm / PDF / /

URL

www.pnas.org͞cgi͞doi͞10.1073͞pnas.0702971104 / /

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