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Samuel Teinturier

Researcher at Centre national de la recherche scientifique

Publications -  14
Citations -  1285

Samuel Teinturier is an academic researcher from Centre national de la recherche scientifique. The author has contributed to research in topics: Sample Analysis at Mars & Rocknest. The author has an hindex of 7, co-authored 13 publications receiving 1076 citations.

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The Sample Analysis at Mars Investigation and Instrument Suite

Paul R. Mahaffy, +84 more
TL;DR: The Sample Analysis at Mars (SAM) investigation of the Mars Science Laboratory (MSL) addresses the chemical and isotopic composition of the atmosphere and volatiles extracted from solid samples.
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Volatile, Isotope, and Organic Analysis of Martian Fines with the Mars Curiosity Rover

TL;DR: Samples from the Rocknest aeolian deposit were heated to ~835°C under helium flow and evolved gases analyzed by Curiosity's Sample Analysis at Mars instrument suite, suggesting that oxygen is produced from thermal decomposition of an oxychloride compound.
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Evidence for perchlorates and the origin of chlorinated hydrocarbons detected by SAM at the Rocknest aeolian deposit in Gale Crater

TL;DR: A single scoop of the Rocknest aeolian deposit was sieved and four separate sample portions, each with a mass of ~50mg, were delivered to individual cups inside the Sample Analysis at Mars (SAM) instrument by the Mars Science Laboratory rover's ample acquisition system.
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Small-scale instabilities of an island wake flow in a rotating shallow-water layer

TL;DR: In this article, the authors present the first experimental investigation of three-dimensional destabilizations of an island wake flow in a shallow-water configuration, with small aspect ratio (α = 0.1 ) and large Reynolds numbers (R e = 5000 − 35, 000 ).
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Amplification of a Surface-Intensified Eddy Drift along a Steep Shelf in the Eastern Mediterranean Sea

TL;DR: In this paper, the authors used a two-layer beta-plane model with steep continental slope and nearly zonal boundary to study the impact of a steep shelf topography on the propagation of compact surface-intensified vortices.