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STLO) (https://eng-stlo.rennes.hub.inrae.fr/ ). This work is part of the “Predicting the browning of dairy powders by kinetic modeling of Maillard reaction and caramelization during drying and storage
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mechanobiology for life science applications. The PhD project will be jointly supervised by Laurent Malaquin (LAAS-CNRS) and Elise Rigot (LLA-CREATIS, Université Toulouse Jean Jaurès) as part of an original Art
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may unexpectedly restore NK-cell function and promote tumor control. This PhD project aims to decipher how Notch and TGFβ pathways interact to regulate NK-cell biology and to exploit these mechanisms
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-of-the-art optical imaging system at PhLAM. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR8520-STEGIO-003/Default.aspx Requirements Research FieldPhysicsEducation LevelMaster Degree
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will receive necessary training for SN-seq and SN(ATAC)-seq transcriptomic analysis through tutoring by the Inforbio platform (IBPS)(resp: Lorette Noiret). State of the art The cerebellum is essential in
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technologies. The team combines state-of-the-art experimental techniques—including optical spectroscopy, magneto-photoluminescence, and ultrafast measurements—with theoretical modeling. From Hot Carriers
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in turn modifies rates of melting. Accurate representation of these coupled interactions requires a coupled ice-sheet–ocean model – a feature that is missing from most state-of-the-art ESMs. Instead
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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | 3 months ago
demonstrators for specific applications, we propose to valorize these results through the development of interactive art with one or several parallel continuum robots, which will be exposed, and to observe and
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observations of material evolution during ion interactions remain largely unexplored. Such knowledge is crucial to understand transient processes and defect dynamics, in order to design next-generation materials
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environments. More specifically, this PhD project belongs to the research theme "Radiolysis at Interfaces", currently developed within the MATICE group. The work will be conducted in close interaction with