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Statistical chronometry of Meteorites: II. Initial abundances and homogeneity of short-lived radionuclides
Steven J. Desch
, Daniel R. Dunlap
, Curtis D. Williams
, Prajkta Mane
, Emilie T. Dunham
Earth and Space Exploration, School of (SESE)
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Article
›
peer-review
17
Scopus citations
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Dive into the research topics of 'Statistical chronometry of Meteorites: II. Initial abundances and homogeneity of short-lived radionuclides'. Together they form a unique fingerprint.
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Keyphrases
26Al
100%
Short-lived Radionuclides
100%
Chronometry
100%
53Mn
80%
Achondrites
60%
27Al
60%
Solar Nebula
40%
Chondrules
40%
PbPb
40%
Chronometer
40%
55Mn
40%
Planet Formation
20%
Statistical Techniques
20%
Astrophysical Models
20%
Long-lived
20%
Planetesimals
20%
Formation Age
20%
Parameter-free
20%
Radiometric Dating
20%
Meteoritic Component
20%
Earth and Planetary Sciences
Radioactive Isotope
100%
Achondrite
100%
Solar Nebula
66%
Chondrule
66%
Planet Formation
33%
Half-Life
33%
Protoplanets
33%
Radionuclide
33%
Physics
Radioactive Isotope
100%
Achondrite
100%
Solar Nebula
66%
Chondrule
66%
Planet Formation
33%
Protoplanets
33%
Half-Life
33%