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Prebiotic carbon in clays from Orgueil and Ivuna (CI), and Tagish Lake (C2 ungrouped) meteorites
Laurence Garvie
, P R Buseck
Meteorite Studies, Center for
Earth and Space Exploration, School of (SESE)
Molecular Sciences, School of (SMS)
Geographical Sciences and Urban Planning, School of (SGSUP)
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Article
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peer-review
37
Scopus citations
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Physics & Astronomy
lakes
100%
meteorites
96%
clays
83%
carbon
50%
flakes
31%
carbonaceous chondrites
21%
carbonates
15%
meteorite parent bodies
12%
energy dissipation
10%
electron energy
10%
chemical evolution
8%
amorphous materials
7%
solar system
7%
minerals
6%
silicates
6%
proposals
6%
acids
6%
fine structure
5%
nitrogen
5%
electrons
2%
Earth & Environmental Sciences
meteorite
77%
clay
49%
lake
44%
carbon
42%
carbonaceous chondrite
17%
electron
14%
particle
10%
carbonate
9%
parent body
8%
loss
7%
solar system
7%
energy
6%
silicate
5%
material
5%
organic matter
4%
acid
4%
nitrogen
4%
mineral
3%
chemical
3%
effect
1%