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Textural and Compositional Studies of Sulfide-Metal Assemblages in CR Chondrites: Evidence for Nebular Sulfidization and Parent Body Oxidation

Published online by Cambridge University Press:  22 July 2022

S. A. Singerling*
Affiliation:
NanoEarth, Institute for Critical Technology and Applied Science, Virginia Polytechnic Institute and State University, Blacksburg, VA, United States
A. J. Brearley
Affiliation:
Department of Earth and Planetary Sciences, University of New Mexico, Albuquerque, NM, United States
*
*Corresponding author: ssheryl@vt.edu

Abstract

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Type
Planetary-materials Characterization in the Era of Mission Returned Sample Analysis
Copyright
Copyright © Microscopy Society of America 2022

References

Brearley, A in “Meteorites and the early solar system II”, eds. Lauretta, D and McSween, H, (Univ. Arizona Press) p. 587Google Scholar
Lauretta, D, et al. , Proc. NIPR SAM 9 (1996), p. 111126.Google Scholar
Lauretta, D et al. , Science 277 (1997), p. 358360.10.1126/science.277.5324.358CrossRefGoogle Scholar
Schrader, D and Lauretta, D, GCA 74 (2010), p. 17191733.Google Scholar
Singerling, S and Brearley, A, MAPS 53 (2018), p. 20782106.Google Scholar
Grossman, J and Wasson, J, GCA 51 (1987), p. 30033011.Google Scholar
Lauretta, D, et al. , Proc. NIPR SAM 9 (1995), p. 134137.Google Scholar
Singerling, S, Ph.D. thesis UNM (2018), 347 p.Google Scholar
This work was supported by the Nanoscale Characterization and Fabrication Laboratory and the Virginia Tech National Center for Earth and Environmental Nanotechnology Infrastructure (NanoEarth), a member of the National Nanotechnology Coordinated Infrastructure (NNCI), supported by NSF (ECCS 1542100 and ECCS 2025151).Google Scholar