Gale crater on Mars was once a lake fed by rivers and groundwater. Hurowitz et al. analyzed 3.5 years of data from the Curiosity rover’s exploration of Gale crater to determine the chemical conditions in the ancient lake. Close to the surface, there were plenty of oxidizing agents and rocks formed from large, dense grains, whereas the deeper layers had more reducing agents and were formed from finer material. This redox stratification led to very different environments in different layers, which provides evidence for Martian climate change. The results will aid our understanding of where and when Mars was once habitable
Evidence indicates that Gale crater on Mars harboured a fluvio-lacustrine environment that was subje...
International audienceMars Science Laboratory (MSL) Curiosity rover data are used to describe the mo...
Clay minerals provide indicators of the evolution of aqueous conditions and possible habitats for li...
In 2012, NASA’s Curiosity rover landed on Mars to assess its potential as a habitat for past life an...
Gale crater, home of the Curiosity rover, contains some of the best geomorphic and sedimentologic ev...
The Curiosity rover discovered fine-grained sedimentary rocks, which are inferred to represent an an...
The Curiosity rover discovered fine-grained sedimentary rocks, which are inferred to represent an an...
International audienceThe Curiosity rover discovered fine-grained sedimentary rocks, which are infer...
The Mars Science Laboratory Curiosity rover landed in Gale crater in August 2012 to assess the habit...
The Curiosity rover discovered fine-grained sedimentary rocks, which are inferred to represent an an...
The Curiosity rover's exploration of rocks and soils in Gale crater has provided diverse geochemical...
International audienceThe Mars Science Laboratory Curiosity rover arrived at Mars in August 2012 wit...
Evidence indicates that Gale crater on Mars harboured a fluvio-lacustrine environment that was subje...
International audienceMars Science Laboratory (MSL) Curiosity rover data are used to describe the mo...
Clay minerals provide indicators of the evolution of aqueous conditions and possible habitats for li...
In 2012, NASA’s Curiosity rover landed on Mars to assess its potential as a habitat for past life an...
Gale crater, home of the Curiosity rover, contains some of the best geomorphic and sedimentologic ev...
The Curiosity rover discovered fine-grained sedimentary rocks, which are inferred to represent an an...
The Curiosity rover discovered fine-grained sedimentary rocks, which are inferred to represent an an...
International audienceThe Curiosity rover discovered fine-grained sedimentary rocks, which are infer...
The Mars Science Laboratory Curiosity rover landed in Gale crater in August 2012 to assess the habit...
The Curiosity rover discovered fine-grained sedimentary rocks, which are inferred to represent an an...
The Curiosity rover's exploration of rocks and soils in Gale crater has provided diverse geochemical...
International audienceThe Mars Science Laboratory Curiosity rover arrived at Mars in August 2012 wit...
Evidence indicates that Gale crater on Mars harboured a fluvio-lacustrine environment that was subje...
International audienceMars Science Laboratory (MSL) Curiosity rover data are used to describe the mo...
Clay minerals provide indicators of the evolution of aqueous conditions and possible habitats for li...