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1.
Geophys Res Lett ; 44(15): 7676-7685, 2017 Aug 16.
Artículo en Inglés | MEDLINE | ID: mdl-33100420

RESUMEN

The latitude-altitude map of ammonia mixing ratio shows an ammonia-rich zone at 0-5°N, with mixing ratios of 320-340 ppm, extending from 40-60 bars up to the ammonia cloud base at 0.7 bars. Ammonia-poor air occupies a belt from 5-20°N. We argue that downdrafts as well as updrafts are needed in the 0-5°N zone to balance the upward ammonia flux. Outside the 0-20°N region, the belt-zone signature is weaker. At latitudes out to ±40°, there is an ammonia-rich layer from cloud base down to 2 bars which we argue is caused by falling precipitation. Below, there is an ammonia-poor layer with a minimum at 6 bars. Unanswered questions include how the ammonia-poor layer is maintained, why the belt-zone structure is barely evident in the ammonia distribution outside 0-20°N, and how the internal heat is transported through the ammonia-poor layer to the ammonia cloud base.

2.
Science ; 319(5870): 1649-51, 2008 Mar 21.
Artículo en Inglés | MEDLINE | ID: mdl-18356521

RESUMEN

Cassini radar observations of Saturn's moon Titan over several years show that its rotational period is changing and is different from its orbital period. The present-day rotation period difference from synchronous spin leads to a shift of approximately 0.36 degrees per year in apparent longitude and is consistent with seasonal exchange of angular momentum between the surface and Titan's dense superrotating atmosphere, but only if Titan's crust is decoupled from the core by an internal water ocean like that on Europa.


Asunto(s)
Saturno , Agua , Atmósfera , Medio Ambiente Extraterrestre , Hielo , Nave Espacial , Viento
3.
Phys Sportsmed ; 10(7): 13, 1982 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-29267095
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