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Search results for “Mars”

1,000+ results for "Mars"

Scientists want to 3D print houses on Mars with the help of yeast

Researchers have created a recipe for 3D printing houses on Mars using Martian rocks, gelatin, and yeast. The resulting living building material is strong and can be broken down, recycled, and reused, making it a promising solution for low-energy construction and a circular economy on the Red Planet.

SourceCell Press·JournalChem Circularity·TypeExperimental study·DateSep 10, 2026

What a dry meteorite tells us about water on Mars

A team of researchers used neutron and X-ray tomography to examine a Martian meteorite sample, revealing tiny hydrated minerals and larger macroscopic hydrogen deposits. This provides crucial information about the early environment of Mars and its potential for supporting life.

SourcePaul Scherrer Institute·JournalGeophysical Research Letters·TypeExperimental study·DateAug 13, 2026

From classroom to Mars: European students return from six-day analog space mission

Nine European high school students completed a six-day simulated Mars mission in Portugal, operating rovers and conducting scientific experiments. The EXPLORE-2 mission aimed to develop young Europeans' STEM skills and team management capabilities, with participants designing their own mission plans and making operational decisions.

How resilient fungus might survive Mars and space

A study published in Applied and Environmental Microbiology suggests that a fungus strain called Aspergillus calidoustus can survive the harsh conditions of space travel and Martian environments. The fungus was found to tolerate extreme temperatures, radiation, and pressure, making it a strong candidate for surviving the trip to Mars.

SourceAmerican Society for Microbiology·JournalApplied and Environmental Microbiology·DateApr 20, 2026

Thin ice may have protected lake water on frozen Mars

A team of researchers from Rice University discovered that lakes on ancient Mars could persist under thin seasonal ice for at least decades, contradicting earlier climate models. The study suggests that surface features shaped by sustained liquid water coexist with the idea that early Mars was too cold to support such conditions.

SourceRice University·JournalAGU Advances·DateJan 5, 2026

Mars’ salty secrets: how ancient brines imprinted their chemical fingerprints in Martian minerals

Researchers have discovered that jarosite selectively captures bromine under Mars-like conditions, offering insights into the Red Planet's aqueous past and halogen cycling. The study reveals a clear trend: bromine is strongly favored over chlorine for incorporation into jarosite, with specific temperature-dependent effects.

SourceHigher Education Press·JournalPlanet·TypeExperimental study·DateDec 11, 2025

How sound moves on Mars

Researchers used NASA's measurements to simulate sound propagation on Mars, providing insight into weather and terrain effects on acoustic propagation. The study focused on the Jezero crater, where it simulated how sound moves through complex terrains, helping scientists understand how other atmospheres compare to Earth's.

Dynamic duo of bacteria could change Mars dust into versatile building material for first human colonists

A collaboration of bacteria, including Sporosarcina pasteurii and Chroococcidiopsis, produces natural cement-like materials that can turn Martian regolith into solid concrete. This discovery has the potential to revolutionize construction on Mars and provide benefits for habitat integrity and life-support systems.

SourceFrontiers·JournalFrontiers in Microbiology·TypeExperimental study·DateDec 2, 2025

Are there living microbes on Mars? Check the ice, researchers say

A team of researchers from NASA Goddard and Penn State found that fragments of molecules from E. coli bacteria can survive for over 50 million years in pure water ice, but degrade faster in mixed soil samples. This suggests that future Mars missions should target locations with pure ice or ice-dominated permafrost to search for life.

SourcePenn State·JournalAstrobiology·TypeExperimental study·DateOct 16, 2025

Dancing dust devils trace raging winds on Mars

Scientists have tracked 1039 dust devils to reveal how they lift dust into the air and sweep around Mars' surface. The study found wind speeds of up to 44 m/s, faster than previously measured with rovers on the ground, and improved our understanding of Martian weather patterns.

SourceEuropean Space Agency·JournalScience Advances·TypeImaging analysis·DateOct 8, 2025

Composing crews for Mars missions

A new study published in PLOS One found that team diversity in personality traits can contribute to greater resilience under extended isolation and operational load. The researchers used agent-based modeling to simulate the impact of team composition on stress, health, performance, and cohesion over a 500-day Mars mission.

SourcePLOS·JournalPLOS One·TypeComputational simulation/modeling·DateOct 8, 2025

Raging winds on Mars

Researchers used deep learning to identify dust devils in satellite images, revealing high wind speeds that lift more dust into the atmosphere than previously thought. The study's findings have significant implications for future Mars missions, enabling better modeling of Martian weather and climate.

SourceUniversity of Bern·JournalScience Advances·TypeImaging analysis·DateOct 8, 2025

UMass researchers help ID new mineral on Mars, providing insight on the Red Planet’s potential to have supported life

Researchers from UMass Amherst identified a unique mineral on Mars, ferric hydroxysulfate, which provides clues about the Martian environment and history. The mineral was formed at high temperatures in an acidic environment and is believed to have been created via geothermal heat.

SourceUniversity of Massachusetts Amherst·JournalNature Communications·TypeImaging analysis·DateSep 29, 2025

USTC deciphers temperature-governed processes of lithium-mars gas batteries

Researchers from USTC deciphered the temperature-governed processes of lithium-mars gas batteries, finding that temperature regulates a balance between two-electron and four-electron processes. Low temperatures cause interface passivation, while high temperatures stimulate decomposition efficiency through the generation of highly activ...

SourceUniversity of Science and Technology of China·JournalAdvanced Functional Materials·DateSep 22, 2025

Volcanic emissions of reactive sulfur gases may have shaped early mars climate, making it more hospitable to life

A new study suggests that volcanic activity on early Mars emitted sulfur gases, creating a greenhouse effect and making the planet's climate more hospitable to life. The research found high concentrations of chemically reduced forms of sulfur, which are highly reactive and could have induced a hazy environment.

SourceUniversity of Texas at Austin·JournalScience Advances·DateSep 11, 2025

Mars’ mantle is a preserved relic of its ancient past, seismic data reveals

A new study of Martian seismic data collected by NASA's InSight mission reveals a highly heterogeneous and disordered mantle on Mars, born from ancient impacts and chaotic convection. The findings offer an unprecedented window into the geological history and thermochemical evolution of a terrestrial planet under a stagnant lid.

Paper examines role of seasonal frost in brine formation on Mars

Researchers found that brines can develop for brief periods during late winter and early spring from melting frost, suggesting transient water activity is most likely during specific seasons. The study highlights the importance of targeting seasonal windows to detect brine formation with future astrobiological investigations.

SourceUniversity of Arkansas·JournalCommunications Earth & Environment·TypeComputational simulation/modeling·DateJul 16, 2025