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Testing accretion mechanisms of the H chondrite parent body utilizing nucleosynthetic anomalies
Soren Grube Pedersen,
Martin Schiller
,
James N. Connelly
,
Martin Bizzarro
Sustainability Science Center
9
Citations (Scopus)
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Dive into the research topics of 'Testing accretion mechanisms of the H chondrite parent body utilizing nucleosynthetic anomalies'. Together they form a unique fingerprint.
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Keyphrases
Parent Body
100%
Nucleosynthetic Anomalies
100%
Planetary Bodies
50%
Calcium-aluminum-rich Inclusions
33%
Inner Solar System
33%
27Al
33%
26Al
33%
Angrite
16%
Age Estimation
16%
Temporal Variation
16%
Systematic Variation
16%
Isotope Variability
16%
CV Chondrites
16%
Thermal Evolution
16%
Protoplanetary Disks
16%
Secular Evolution
16%
Isotopic Composition
16%
Analytical Uncertainty
16%
Thermal Metamorphism
16%
Chondrite Meteorites
16%
53Cr
16%
Earth and Planetary Sciences
Chondrite
100%
Parent Body
100%
Solar System
28%
Spatial Variation
14%
Protoplanetary Disk
14%
Temporal Variation
14%
Planetary System
14%
Thermal Evolution
14%
Timescale
14%
Isotopic Composition
14%