NASA Technical Reports Server (NTRS) : The pdf

NASA Technical Reports Server (NTRS) : The_bookcover

NASA Technical Reports Server (NTRS) : The

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The apparent paradox that the majority of impacts yielding Martian meteorites appear to have taken place on only a few percent of the Martian surface can be resolved if all the shergottites were ejected in a single event rather than in multiple events as expected from variations in their cosmic ray exposure and crystallization ages. If the shergottite-ejection event is assigned to one of three craters in the vicinity of Olympus Mons that were previously identified as candidate source craters for the SNC (Shergottites, Nakhlites, Chassigny) meteorites, and the nakhlite event to another candidate crater in the vicinity of Ceraunius Tholus, the implied ages of the surrounding terranes agree well with crater density ages. EN,en for high cratering rates (minimum ages), the likely origin of the shergottites is in the Tharsis region, and the paradox of too many meteorites from too little terrane remains for multiple shergottite-ejection events.

However, for high cratering rates it is possible to consider sources for the nakhlltes which are away from the Tharsis region. The meteorite-yielding impacts may have been widely dispersed with sources of the young SNC meteorites in the northern plains, and the source of the ancient orthopyroxenite, ALH84001, in the ancient southern uplands. Oblique-impact craters can be identified with the sources of the nakhlites and the orthopyroxenite,, respectively, in the nominal cratering rate model, and with the shergottites and orthopyroxenite, respectively, in the high cratering rate model. Thus, oblique impacts deserve renewed attention as an ejection mechanism for Martian meteorites

  • Creator/s: NASA Technical Reports Server (NTRS
  • Date: 2/1/1998
  • Year: 1998
  • Book Topics/Themes: NASA Technical Reports Server (NTRS), SHERGOTTITES, MARS SURFACE, METEORITES, PARADOXES, METEORITIC COMPOSITION, PROBABILITY THEORY, NAKHLITES, MINERALOGY, EJECTION, MARS VOLCANOES, HYPERVELOCITY, CRYSTALLIZATION, CRATERS, COSMIC RAYS, Borg, L. E., Shih, C.-Y., Nyquist, L. E

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