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Atmospheric sciences / Climate history / Climate of Mars / Arsia Mons / Olympus Mons / Arsia / Atmospheric model / Wind / Global climate model / Shield volcanoes / Mars / Geology


letters to nature .............................................................. Simulation of the atmospheric thermal circulation of a martian volcano using a mesoscale numerical
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Document Date: 2002-10-16 16:30:32


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City

Ulm / Islas Baleares / Como / San Jose´ / Valbonne / Bari / /

Company

Nature Publishing Group / Malin Space Science Systems / Wilson / Olympus / Tyler / /

Country

Germany / France / United States / Italy / Spain / /

/

Event

Natural Disaster / /

Facility

San Jose´ State University / One Washington Square / University of Ulm / /

Holiday

Vernal Equinox Day / /

IndustryTerm

energy / /

Organization

Timothy I. Michaels Department of Meteorology / National Aeronautics and Space Administration / San Jose´ State University / /

Person

Massimo Brambilla / Stephane Barland / Luigi A. Lugiato / Michael Millerk / Magdalena R. V. Sta / Jorge R. Tredicce / Salvador Balle / Timothy I. Michaels / Lorenzo Spinelli / Thomas Kno / Scot C. R. Rafkin / Giovanna Tissoni / Miguel Marques / Roland Ja / /

Position

model for the Martian atmosphere / General / Surveyor / numerical model / /

ProvinceOrState

Pennsylvania / California / /

Technology

semiconductor / radiation / laser / Optoelectronics / Simulation / /

URL

www.nature.com/nature / /

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