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Gary R. Huss

Researcher at University of Hawaii at Manoa

Publications -  240
Citations -  8713

Gary R. Huss is an academic researcher from University of Hawaii at Manoa. The author has contributed to research in topics: Chondrite & Chondrule. The author has an hindex of 51, co-authored 228 publications receiving 8012 citations. Previous affiliations of Gary R. Huss include University of New Mexico & University of Southern California.

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Calcium-aluminum-rich inclusions with fractionation and unidentified nuclear effects (FUN CAIs): II. Heterogeneities of magnesium isotopes and 26Al in the early Solar System inferred from in situ high-precision magnesium-isotope measurements

TL;DR: In this paper, high precision measurements of aluminum-magnesium isotope systematics of CAIs by secondary ion mass spectrometry (SIMS) have been reported, and the inferred initial 26Al/27Al ratios are calculated using an exponential law with an exponent β of 0.5128.
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Hydrogen isotopic composition of the water in CR chondrites

TL;DR: The thermal and aqueous alteration experienced by QUE 99177, MET 00426, EET 92042, GRA 95229, Renazzo and Al Rais CR chondrites was assessed through multi-technique characterization of their the carbonaceous matter and hydrated mineral phases as discussed by the authors.
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Oxygen-isotope compositions of chondrule phenocrysts and matrix grains in Kakangari K-grouplet chondrite: Implication to a chondrule-matrix genetic relationship

TL;DR: In this paper, the authors investigated the relationship between chondrules and matrix in the Kakangari K-grouplet chondrite and found that the chondritic components are genetically related in the sense that material that formed matrix was one of the precursors of chond rules and some fraction of matrix experienced the same thermal processing event.
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The role of presolar dust in the formation of the solar system

TL;DR: In this paper, the characteristics of presolar dust are discussed and evidence is provided to support the possibility that presolar sand was the primary building material for the meteorites and terrestrial planets.
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Heterogeneous distribution of Al-26 at the birth of the Solar System

TL;DR: In this article, the authors show that micron-sized corundum condensates from O-16-rich gas (Big Delta O-17 ~ -25%) of solar composition recorded heterogeneous distribution of Al-26 at the birth of the solar system.