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Iron mobility during diagenesis deduced from ChemCam observations at Gale Crater, Mars

L'Harridon, J.; Mangold, N.; Wiens, R. C.; Cousin, A.; David, G.; Johnson, J. R.; Freeman, A.; Rapin, W.; Frydenvang, J.; Schwenzer, S.; Bridges, J. C.; Horgan, B.; House, C.; Meslin, P.-J.; Gasnault, O. and Maurice, S. (2019). Iron mobility during diagenesis deduced from ChemCam observations at Gale Crater, Mars. In: 50th Lunar and Planetary Science Conference, 18-22 Mar 2019, The Woodlands, Houston, Texas, USA.

URL: https://www.hou.usra.edu/meetings/lpsc2019/pdf/186...
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Item Type: Conference or Workshop Item
Project Funding Details:
Funded Project NameProject IDFunding Body
Water Rock Reactions, Key to Habitability from the Gale Crater Lake to ExoMarsST/S001522/1UKSA UK Space Agency
Academic Unit/School: Faculty of Science, Technology, Engineering and Mathematics (STEM) > Environment, Earth and Ecosystem Sciences
Faculty of Science, Technology, Engineering and Mathematics (STEM)
Research Group: Space
Item ID: 61054
Depositing User: Susanne Schwenzer
Date Deposited: 14 May 2019 15:24
Last Modified: 20 May 2019 10:51
URI: http://oro.open.ac.uk/id/eprint/61054
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