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Marc D Norman

Showing results (1-10 of 8) with videos related to

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Science (New York, N.Y.)|October 2, 2004
Geochemical evidence for excess iron in the mantle beneath HawaiiMunir Humayun, Liping Qin, Marc D Norman
Nature|October 10, 2003
Growth of early continental crust by partial melting of eclogiteRobert P Rapp, Nobumichi Shimizu, Marc D Norman
Nature|April 7, 2006
Isotopic enhancements of 17O and 18O from solar wind particles in the lunar regolithTrevor R Ireland, Peter Holden, Marc D Norman, et al.
Nature|January 20, 2006
Thallium isotopic evidence for ferromanganese sediments in the mantle source of Hawaiian basaltsSune G Nielsen, Mark Rehkämper, Marc D Norman, et al.
Scientific Reports|April 21, 2019
Extensive wet episodes in Late Glacial Australia resulting from high-latitude forcingsGermain Bayon, Patrick De Deckker, John W Magee, et al.
Science Advances|May 9, 2025
A potential mantle origin for precursor rocks of high-Mg impact glass beads in Chang'e-5 soilChen-Long Ding, Alexander Nemchin, Tim Johnson, et al.
Science Advances|September 28, 2022
Constraining the formation and transport of lunar impact glasses using the ages and chemical compositions of Chang'e-5 glass beadsTao Long, Yuqi Qian, Marc D Norman, et al.
Science (New York, N.Y.)|October 7, 2021
Age and composition of young basalts on the Moon, measured from samples returned by Chang'e-5Xiaochao Che, Alexander Nemchin, Dunyi Liu, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Science (New York, N.Y.)|October 2, 2004
Geochemical evidence for excess iron in the mantle beneath HawaiiMunir Humayun, Liping Qin, Marc D Norman
Nature|October 10, 2003
Growth of early continental crust by partial melting of eclogiteRobert P Rapp, Nobumichi Shimizu, Marc D Norman
Nature|April 7, 2006
Isotopic enhancements of 17O and 18O from solar wind particles in the lunar regolithTrevor R Ireland, Peter Holden, Marc D Norman, et al.
Nature|January 20, 2006
Thallium isotopic evidence for ferromanganese sediments in the mantle source of Hawaiian basaltsSune G Nielsen, Mark Rehkämper, Marc D Norman, et al.
Scientific Reports|April 21, 2019
Extensive wet episodes in Late Glacial Australia resulting from high-latitude forcingsGermain Bayon, Patrick De Deckker, John W Magee, et al.
Science Advances|May 9, 2025
A potential mantle origin for precursor rocks of high-Mg impact glass beads in Chang'e-5 soilChen-Long Ding, Alexander Nemchin, Tim Johnson, et al.
Science Advances|September 28, 2022
Constraining the formation and transport of lunar impact glasses using the ages and chemical compositions of Chang'e-5 glass beadsTao Long, Yuqi Qian, Marc D Norman, et al.
Science (New York, N.Y.)|October 7, 2021
Age and composition of young basalts on the Moon, measured from samples returned by Chang'e-5Xiaochao Che, Alexander Nemchin, Dunyi Liu, et al.
Pageof 1