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Browsing LPI Contributions by Author "Mazarico, Erwan"

Browsing LPI Contributions by Author "Mazarico, Erwan"

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  • Rivera-Valentín, Edgard G.; Meyer, Heather M.; Taylor, Patrick A.; Mazarico, Erwan; Bhiravarasu, Sriram S.; Virkki, Anne K.; Nolan, Michael C.; Chabot, Nancy L.; Giorgini, Jon D.; https://orcid.org/0000-0002-4042-003X; https://orcid.org/0000-0002-2493-943X (IOP Publishing, 2022-03-14)
    Ground-based planetary radar observations first revealed deposits of potentially nearly pure water ice in some permanently shadowed regions (PSRs) on Mercury's poles. Later, the MESSENGER spacecraft confirmed the icy nature ...
  • Smrekar, Suzanne E.; Andrews-Hanna, Jeffrey C.; Breuer, Doris; Byrne, Paul; Buczkowski, Debra L.; Campbell, Bruce A.; Davaille, A.; Dyar, M. Darby (Melinda Darby); Di Achille, G.; Fassett, Caleb; Gilmore, Martha S.; Grimm, Robert E.; Helbert, Jorn; Hensley, Scott; Herrick, Robert R.; Iess, Luciano; Jozwiak, Lauren; Katiaria, Tiffany; Mastrogiuseppe, Marco; Mazarico, Erwan; Mueller, Nils; Nunes, Daniel; O'Rourke, Joseph; McGovern, Patrick J. (Geophysicist); Raguso, Maria; Stock, Joann; Tsang, Constantine; Widemann, Thomas; Whitten, Jennifer; Widemann, Thomas; Zebker, Howard; https://orcid.org/0000-0001-9647-3096; https://orcid.org/0000-0002-7588-1194 (2020)
    Although supremely unhospitable to life today, Venus's geodynamic similarities to Earth provide the ultimate control case for understanding rocky planet evolution and habitability. It very likely had past long-term surface ...
  • Neumann, Gregory A.; Zuber, Maria T.; Wieczorek, Mark A.; Head, James W.; Baker, David M. H.; Solomon, Sean C.; Smith, David E.; Lemoine, Frank G.; Mazarico, Erwan; Sabaka, Terence J.; Goossens, Sander J.; Melosh, H. J.; Phillips, R. J. (Roger J.), 1940-2020; Asmar, Sami W.; Konopliv, Alexander S.; Williams, James G.; Sori, Michael M.; Soderblom, Jason M.; Miljković, Katarina; Andrews-Hanna, Jeffrey C.; Nimmo, Francis; Kiefer, Walter S.; https://orcid.org/0000-0001-6741-5460 (American Association for the Advancement of Science, 2015-10-30)
    Observations from the Gravity Recovery and Interior Laboratory (GRAIL) mission indicate a marked change in the gravitational signature of lunar impact structures at the morphological transition, with increasing diameter, ...

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