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1.
Science ; 306(5702): 1698-703, 2004 Dec 03.
Artigo em Inglês | MEDLINE | ID: mdl-15576602

RESUMO

The Mars Exploration Rover Opportunity has investigated the landing site in Eagle crater and the nearby plains within Meridiani Planum. The soils consist of fine-grained basaltic sand and a surface lag of hematite-rich spherules, spherule fragments, and other granules. Wind ripples are common. Underlying the thin soil layer, and exposed within small impact craters and troughs, are flat-lying sedimentary rocks. These rocks are finely laminated, are rich in sulfur, and contain abundant sulfate salts. Small-scale cross-lamination in some locations provides evidence for deposition in flowing liquid water. We interpret the rocks to be a mixture of chemical and siliciclastic sediments formed by episodic inundation by shallow surface water, followed by evaporation, exposure, and desiccation. Hematite-rich spherules are embedded in the rock and eroding from them. We interpret these spherules to be concretions formed by postdepositional diagenesis, again involving liquid water.


Assuntos
Marte , Atmosfera , Evolução Planetária , Meio Ambiente Extraterreno , Compostos Férricos , Sedimentos Geológicos , Minerais , Silicatos , Astronave , Água , Vento
2.
Science ; 306(5702): 1746-9, 2004 Dec 03.
Artigo em Inglês | MEDLINE | ID: mdl-15576611

RESUMO

The Alpha Particle X-ray Spectrometer on the Opportunity rover determined major and minor elements of soils and rocks in Meridiani Planum. Chemical compositions differentiate between basaltic rocks, evaporite-rich rocks, basaltic soils, and hematite-rich soils. Although soils are compositionally similar to those at previous landing sites, differences in iron and some minor element concentrations signify the addition of local components. Rocky outcrops are rich in sulfur and variably enriched in bromine relative to chlorine. The interaction with water in the past is indicated by the chemical features in rocks and soils at this site.


Assuntos
Marte , Partículas alfa , Bromo , Cloro , Elementos Químicos , Meio Ambiente Extraterreno , Compostos Férricos , Sedimentos Geológicos , Ferro , Magnésio , Minerais , Silicatos , Astronave , Espectrometria por Raios X , Sulfatos , Enxofre , Água
3.
Science ; 305(5685): 794-9, 2004 Aug 06.
Artigo em Inglês | MEDLINE | ID: mdl-15297657

RESUMO

The Mars Exploration Rover Spirit and its Athena science payload have been used to investigate a landing site in Gusev crater. Gusev is hypothesized to be the site of a former lake, but no clear evidence for lacustrine sedimentation has been found to date. Instead, the dominant lithology is basalt, and the dominant geologic processes are impact events and eolian transport. Many rocks exhibit coatings and other characteristics that may be evidence for minor aqueous alteration. Any lacustrine sediments that may exist at this location within Gusev apparently have been buried by lavas that have undergone subsequent impact disruption.


Assuntos
Marte , Atmosfera , Meio Ambiente Extraterreno , Sedimentos Geológicos , Fenômenos Geológicos , Geologia , Magnetismo , Minerais , Água , Vento
4.
Science ; 305(5685): 829-32, 2004 Aug 06.
Artigo em Inglês | MEDLINE | ID: mdl-15297665

RESUMO

The alpha particle x-ray spectrometer on the Spirit rover determined major and minor elements of soils and rocks in Gusev crater in order to unravel the crustal evolution of planet Mars. The composition of soils is similar to those at previous landing sites, as a result of global mixing and distribution by dust storms. Rocks (fresh surfaces exposed by the rock abrasion tool) resemble volcanic rocks of primitive basaltic composition with low intrinsic potassium contents. High abundance of bromine (up to 170 parts per million) in rocks may indicate the alteration of surfaces formed during a past period of aqueous activity in Gusev crater.


Assuntos
Elementos Químicos , Marte , Partículas alfa , Bromo , Evolução Planetária , Meio Ambiente Extraterreno , Sedimentos Geológicos , Potássio , Análise Espectral , Água
5.
Adv Space Res ; 34(8): 1702-9, 2004.
Artigo em Inglês | MEDLINE | ID: mdl-15934176

RESUMO

In view to prepare Mars human exploration, it is necessary to promote and lead, at the international level, a highly interdisciplinary program, involving specialists of geochemistry, geophysics, atmospheric science, space weather, and biology. The goal of this program will be to elaborate concepts of individual instruments, then of integrated instrumental packages, able to collect exhaustive data sets of environmental parameters from future landers and rovers of Mars, and to favour the conditions of their implementation. Such a program is one of the most urgent need for preparing human exploration, in order to develop mitigation strategies aimed at ensuring the safety of human explorers, and minimizing risk for surface operations. A few main areas of investigation may be listed: particle and radiation environment, chemical composition of atmosphere, meteorology, chemical composition of dust, surface and subsurface material, water in the subsurface, physical properties of the soil, search for an hypothesized microbial activity, characterization of radio-electric properties of the Martian ionosphere. Scientists at the origin of the present paper, already involved at a high degree of responsibility in several Mars missions, and actively preparing in situ instrumentation for future landed platforms (Netlander--now cancelled, MSL-09), express their readiness to participate in both ESA/AURORA and NASA programs of Mars human exploration. They think that the formation of a Mars Environment working group at ESA, in the course of the AURORA definition phase, could act positively in favour of the program, by increasing its scientific cross-section and making it still more focused on human exploration.


Assuntos
Atmosfera/química , Radiação Cósmica , Marte , Solo/análise , Voo Espacial , Atmosfera/análise , Exobiologia , Fenômenos Geológicos , Geologia , Meteoroides , Conceitos Meteorológicos , Microbiologia do Solo , Telecomunicações , Água
6.
Science ; 297(5578): 81-5, 2002 Jul 05.
Artigo em Inglês | MEDLINE | ID: mdl-12040090

RESUMO

Using the Gamma-Ray Spectrometer on the Mars Odyssey, we have identified two regions near the poles that are enriched in hydrogen. The data indicate the presence of a subsurface layer enriched in hydrogen overlain by a hydrogen-poor layer. The thickness of the upper layer decreases with decreasing distance to the pole, ranging from a column density of about 150 grams per square centimeter at -42 degrees latitude to about 40 grams per square centimeter at -77 degrees. The hydrogen-rich regions correlate with regions of predicted ice stability. We suggest that the host of the hydrogen in the subsurface layer is ice, which constitutes 35 +/- 15% of the layer by weight.


Assuntos
Hidrogênio , Gelo , Marte , Atmosfera , Gelo-Seco , Meio Ambiente Extraterreno , Raios gama , Modelos Teóricos , Nêutrons , Astronave , Espectrometria gama , Análise Espectral , Água
7.
Science ; 279(5357): 1676-80, 1998 Mar 13.
Artigo em Inglês | MEDLINE | ID: mdl-9497279

RESUMO

The magnetometer and electron reflectometer investigation (MAG/ER) on the Mars Global Surveyor spacecraft has obtained magnetic field and plasma observations throughout the near-Mars environment, from beyond the influence of Mars to just above the surface (at an altitude of approximately 100 kilometers). The solar wind interaction with Mars is in many ways similar to that at Venus and at an active comet, that is, primarily an ionospheric-atmospheric interaction. No significant planetary magnetic field of global scale has been detected to date (<2 x 10(21) Gauss-cubic centimeter), but here the discovery of multiple magnetic anomalies of small spatial scale in the crust of Mars is reported.

8.
Adv Space Res ; 14(10): 707-10, 1994 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-11540012

RESUMO

The dosimetric experiments Dose-M and Liulin as part of the more complex French-German-Bulgarian-Russian experiments for the investigation of the radiation environment for Mars-96 mission are described. The experiments will be realized with dosemeter-radiometer instruments, measuring absorbed dose in semiconductor detectors and the particle flux. Two detectors will be mounted on board the Mars-96 orbiter. Another detector will be on the guiderope of the Mars-96 Aerostate station. The scientific aims of Dose-M and Liulin experiments are: Analysis of the absorbed dose and the flux on the path and around Mars behind different shielding. Study of the shielding characteristics of the Martian atmosphere from galactic and solar cosmic rays including solar proton events. Together with the French gamma-spectrometer and the German neutron detectors the investigation of the radiation environment on the surface of Mars and in the atmosphere up to 4000 m altitude will be conducted.


Assuntos
Radiação Cósmica , Monitoramento de Radiação/instrumentação , Atividade Solar , Voo Espacial/instrumentação , Astronave/instrumentação , Marte , Doses de Radiação , Proteção Radiológica , Radiometria , Projetos de Pesquisa , Astronave/normas
9.
Science ; 237(4815): 626-8, 1987 Aug 07.
Artigo em Inglês | MEDLINE | ID: mdl-17758562

RESUMO

In situ measurements of the composition and spatial distribution of heavy thermal positive ions in the coma of comet Halley were made with the heavy-ion analyzer RPA2-PICCA aboard the Giotto spacecraft. Above 50 atomic mass units an ordered series of mass peaks centered at 61, 75, 91, and 105 atomic mass units were observed. Each peak appears to be composed of three or more closely spaced masses. The abundances decrease and the dissociation rates increase smoothly with increasing mass. These observations suggest the presence of chain molecules that are enriched in carbon, oxygen, and hydrogen, such as polyoxymethylene (polymerized formaldehyde), in comet Halley.

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