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Redox Variations in Early Solar System Materials and Implications for Late Stage Planetary Accretion and Planet FormationOxygen fugacity plays an important role in determining the detailed physical and chemical aspects of planets and their building blocks. Basic chemical properties such as the amount of oxidized Fe in a mantle (as FeO), the nature of alloying elements in the core (S, C, H, O, Si), and the solubility of various volatile elements in the silicate and metallic portions of embryos and planets can influence physical properties such as the size of the core, the liquidus and solidus of the mantle and core, and the speciation of volatile compounds contributing to atmospheres. This paper will provide an overview of the range of fO2 variation observed in primitive and differentiated materials that may have participated in accretion (cosmic dust, Star-dust and meteorites), a comparison to observations of planetary fO2 (Mercury, Mars and Earth), and a discus-sion of timing of variation of fO2 within both early and later accreted materials. This overview is meant to promote discussion and interaction between students of these two stages of planet formation to identify areas where more work is needed.
Document ID
20170008924
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Righter, K.
(NASA Johnson Space Center Houston, TX, United States)
Date Acquired
September 22, 2017
Publication Date
August 15, 2017
Subject Category
Astrophysics
Report/Patent Number
JSC-CN-39953
Report Number: JSC-CN-39953
Meeting Information
Meeting: Accretion: Building New Worlds Conference
Location: Houston, TX
Country: United States
Start Date: August 15, 2017
End Date: August 18, 2017
Sponsors: Lunar and Planetary Inst.
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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