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1,000+ results for "Mars"

Mars in Spain

Researchers from Universitat Autonoma de Barcelona have discovered formations in Catalonia resembling Mars' giant spring mounds. The study, published in Geodinamica Acta, suggests possible similarities in origin, shedding new light on the search for water on Mars.

SourceUniversitat Autonoma de Barcelona·JournalGeodinamica Acta·DateApr 4, 2011

Sugar-grain sized meteorites rocked the climates of early Earth and Mars, according to new study

Scientists suggest that bombardments of micro-meteorites on Earth and Mars four billion years ago led to catastrophic cooling effects, making it hard for early life to thrive. The influx of sulphur dioxide into the atmospheres of both planets could have plunged them into an Arctic winter, lasting millions of years.

SourceImperial College London·JournalGeochimica et Cosmochimica Acta·DateApr 1, 2011

Northern Mars landscape actively changing

Scientists have found that the sand dunes in a vast area of northern Mars are changing with both sudden and gradual motions, contrary to previous assumptions. The changes were caused by seasonal carbon-dioxide ice and stronger-than-expected gusts of wind, resulting in sand avalanches and erosion.

SourceUniversity of Arizona·JournalScience·DateFeb 3, 2011

Astronaut muscles waste in space

Research published in the Journal of Physiology found that astronaut muscles deteriorate to that of an 80-year-old after just 180 days in space. The study highlights the need for effective exercise countermeasures to protect muscle and bone on long-duration space missions.

SourceWiley·JournalThe Journal of Physiology·DateAug 17, 2010

Wet era on early Mars was global

New research suggests that liquid water existed all over Mars during its early history, with studies of minerals found in craters revealing a global alteration by water. The discovery provides clues about the planet's potential habitability and suggests sites for future landers.

SourceEuropean Space Agency·JournalScience·DateJun 25, 2010

Could life survive on Mars? Yes, expert says

A team of researchers has discovered methane-eating bacteria that can thrive in extremely salty and cold environments, similar to those found on Mars. The microbes, which survive by eating methane and breathing sulfate instead of oxygen, have implications for the possibility of life existing on the Red Planet.

May/June 2010 GSA Bulletin highlights

Research on Martian impact craters reveals a complex geologic history involving liquid water, ice, volcanism, tectonism, and aeolian processes. Additionally, studies of floods from Pleistocene Glacial Lake Missoula and volcanic activity in Guatemala provide insights into Earth's crust formation and plate tectonic processes.

SourceGeological Society of America·JournalGeological Society of America Bulletin·DateApr 12, 2010

Lost into space

Space physicists from the University of Leicester have identified a significant contributor to Mars' atmospheric escape: pressure from solar wind pulses. The team found that these pulses can drive away particles from Mars' atmosphere, causing a loss of about one third of the material lost into space.

SourceUniversity of Leicester·JournalGeophysical Research Letters·DateMar 12, 2010

Life on Mars theory boosted by new methane study

Scientists have ruled out meteorites as a source of methane on Mars, raising hopes that the gas might be generated by life on the red planet. Methane levels are replenished by an unknown source, with two plausible theories remaining: microorganisms producing methane as a by-product or reactions between volcanic rock and water.

SourceImperial College London·JournalEarth and Planetary Science Letters·DateDec 8, 2009

New concept may enhance Earth-Mars communication

Researchers propose a solution to the crucial problem of ensuring reliable radio communication between Mars and Earth during solar alignments. A pair of communication relay satellites in B-orbits equipped with electric ion propulsion can 'hover' over points leading and trailing Mars' orbit, providing full-time communications.

Mars, methane and mysteries

Recent methane discoveries on Mars suggest either biological or geological activity, with scientists investigating its disappearance after initial detection in 2003. The source of the methane remains unknown, but theories include surface trapping and chemical reactions.

SourceEuropean Space Agency·JournalNature·DateAug 10, 2009

The minerals on Mars influence the measuring of its temperature

Researchers confirm that Mars' surface minerals influence its soil temperature measurements using infrared spectroscopy, with significant increases and falls in reflectance values. This study has implications for NASA's Mars Science Laboratory mission, allowing for more accurate interpretation of data from the soil temperature sensor.

SourceSpanish Foundation for Science and Technology·JournalJournal of Environmental Monitoring·DateJul 14, 2009

Is molecular adsorbent recirculating system effective for all the liver failure patients?

The study found that molecular adsorbent recirculating system (MARS) treatment is effective in patients with acute liver failure. The etiology of liver failure and the grade of encephalopathy before MARS treatment were significant prognostic factors, while coagulation factor 5 levels were also predictive for unknown etiologies.

SourceWorld Journal of Gastroenterology·JournalWorld Journal of Gastroenterology·DateJul 7, 2009

Mars data published in Science this week

The Phoenix Mars Mission provided new details about Mars' water history, including patterns in the ground near the landing site and surprising findings of perchlorate. Researchers discovered ice at varying depths and observed daily weather changes, revealing clues to Martian soil chemistry.

SourceUniversity of Arizona·JournalScience·DateJul 2, 2009

University of Colorado team finds definitive evidence for ancient lake on Mars

A University of Colorado at Boulder research team has discovered the first definitive evidence of shorelines on Mars, indicating an ancient lake that was up to 1,500 feet deep. The lake appears to have formed around 3.4 billion years ago and provides a prime target for future landing missions searching for signs of past life.

SourceUniversity of Colorado at Boulder·JournalGeophysical Research Letters·DateJun 17, 2009

New cleaning protocol for future 'search for life' missions

Scientists at the University of Leeds and NASA have developed a new cleaning protocol to ensure that Earth-based microorganisms don't contaminate Mars samples. The protocol was tested on various sampling devices, including rover scoops and glacial ice core drills, and found to effectively remove detectable organic biosignatures.

SourceUniversity of Leeds·JournalAstrobiology·DateJun 8, 2009