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26
Al-
26
Mg deficit dating ultramafic meteorites and silicate planetesimal differentiation in the early Solar System?
Joel A. Baker,
Martin Schiller
,
Martin Bizzarro
34
Citations (Scopus)
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26
Al-
26
Mg deficit dating ultramafic meteorites and silicate planetesimal differentiation in the early Solar System?'. Together they form a unique fingerprint.
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Keyphrases
26Al
100%
Aging Model
50%
Al-Mg-Si
33%
Analytical Artefact
16%
Analytical Test
16%
Calcium-aluminum-rich Inclusions
83%
Cation Exchange
16%
Core Formation
16%
Early Solar System
100%
High Purity
16%
Inclusion Formation
33%
Ingrowth
16%
Isotope Composition
16%
Law
16%
Magmatism
16%
Mass Bias
16%
Mass Spectrometry Analysis
16%
Mass-dependent Fractionation
16%
Metal Silicate
16%
Mg Isotopes
16%
Multiple Collector Inductively Coupled Plasma Mass Spectrometry
16%
Olivine
100%
Parent Body
33%
Partial Melting
16%
Planetesimals
100%
Protoplanetary Disks
16%
Silicate
100%
Solar System
33%
Ultramafic
100%
Earth and Planetary Sciences
Chladnite
100%
Iron Meteorite
33%
Ureilite
100%