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1.
Science ; 289(5485): 1737-40, 2000 Sep 08.
Artigo em Inglês | MEDLINE | ID: mdl-10976064

RESUMO

Large-scale nonlinear simulations of Jupiter's 5-micron hot spots produce long-lived coherent structures that cause subsidence in local regions, explaining the low cloudiness and the dryness measured by the Galileo probe inside a hot spot. Like observed hot spots, the simulated coherent structures are equatorially confined, have periodic spacing, propagate west relative to the flow, are generally confined to one hemisphere, and have an anticyclonic gyre on their equatorward side. The southern edge of the simulated hot spots develops vertical shear of up to 70 meters per second in the eastward wind, which can explain the results of the Galileo probe Doppler wind experiment.


Assuntos
Amônia , Sulfeto de Hidrogênio , Júpiter , Água , Meio Ambiente Extraterreno , Pressão , Temperatura
2.
Science ; 286(5437): 77-84, 1999 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-10506564

RESUMO

NASA's Galileo mission to Jupiter and improved Earth-based observing capabilities have allowed major advances in our understanding of Jupiter's moons Io, Europa, Ganymede, and Callisto over the past few years. Particularly exciting findings include the evidence for internal liquid water oceans in Callisto and Europa, detection of a strong intrinsic magnetic field within Ganymede, discovery of high-temperature silicate volcanism on Io, discovery of tenuous oxygen atmospheres at Europa and Ganymede and a tenuous carbon dioxide atmosphere at Callisto, and detection of condensed oxygen on Ganymede. Modeling of landforms seen at resolutions up to 100 times as high as those of Voyager supports the suggestion that tidal heating has played an important role for Io and Europa.


Assuntos
Dióxido de Carbono , Júpiter , Oxigênio , Água , Atmosfera , Meio Ambiente Extraterreno , Fenômenos Geológicos , Geologia , Gelo , Magnetismo , Propriedades de Superfície , Temperatura
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