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Solving the Martian meteorite age conundrum using micro-baddeleyite and launch-generated zircon
D. E. Moser
, K. R. Chamberlain
, K. T. Tait
, A. K. Schmitt
,
James R. Darling
, I. R. Barker
, B. C. Hyde
Research output
:
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peer-review
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Dive into the research topics of 'Solving the Martian meteorite age conundrum using micro-baddeleyite and launch-generated zircon'. Together they form a unique fingerprint.
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INIS
zircon
100%
baddeleyite
100%
meteorites
100%
host
75%
minerals
75%
mars planet
75%
growth
50%
disturbances
50%
geochemistry
50%
surfaces
25%
dynamics
25%
magma
25%
travel
25%
solar system
25%
melting
25%
africa
25%
basalt
25%
geochronology
25%
nanostructures
25%
crystallization
25%
zoning
25%
isotope composition
25%
lead isotopes
25%
zirconium oxides
25%
electron beams
25%
Earth and Planetary Sciences
Baddeleyite
100%
Zircon
100%
SNC Meteorite
100%
Shergottites
25%
Solar System
25%
Basalt
25%
Magma
25%
Africa
25%
Geochronology
25%
Geochemistry
25%
Travel Time
25%
Electron Beam
25%