Data returned by NASA’s Mars Science Laboratory Curiosity rover showed evidence for abundant secondary materials, including Fe-oxides, phyllosilicates, and an amorphous component on and below Vera Rubin ridge in the Murray formation. We used equilibrium thermochemical modeling to test the hypothesis that altered sediments were deposited as detrital igneous grains and subsequently underwent diagenesis. Chemical compositions of the Murray formations’ altered components were calculated using data returned by the chemistry and mineralogy X-ray diffraction instrument and the alpha particle X-ray spectrometer on board Curiosity. Reaction of these alteration compositions with a CO2-poor and oxidizing dilute aqueous solution was modeled at 25–100 °...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Data returned by NASA’s Mars Science Laboratory Curiosity rover showed evidence for abundant seconda...
The Mars Science Laboratory rover Curiosity found host rocks of basaltic composition and alteration ...
The Mars Science Laboratory rover Curiosity found host rocks of basaltic composition and alteration ...
International audienceThe Mars Science Laboratory rover Curiosity found host rocks of basaltic compo...
The Curiosity rover of Mars Science Laboratory (MSL) has identified and analysed, for the first time...
The Curiosity rover investigated a topographic structure known as Vera Rubin ridge, associated with ...
The Mars Science Laboratory rover Curiosity has been exploring sedimentary deposits in Gale crater s...
International audienceSedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, we...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Data returned by NASA’s Mars Science Laboratory Curiosity rover showed evidence for abundant seconda...
The Mars Science Laboratory rover Curiosity found host rocks of basaltic composition and alteration ...
The Mars Science Laboratory rover Curiosity found host rocks of basaltic composition and alteration ...
International audienceThe Mars Science Laboratory rover Curiosity found host rocks of basaltic compo...
The Curiosity rover of Mars Science Laboratory (MSL) has identified and analysed, for the first time...
The Curiosity rover investigated a topographic structure known as Vera Rubin ridge, associated with ...
The Mars Science Laboratory rover Curiosity has been exploring sedimentary deposits in Gale crater s...
International audienceSedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, we...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...
Sedimentary rocks examined by the Curiosity rover at Yellowknife Bay, Mars, were derived from source...