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Inria, the French national research institute for the digital sciences | Villers les Nancy, Lorraine | France | 2 days ago
macromolecular dynamics, as well as collaborations with the European MDDB initiative. The candidate will develop new graph transformer architectures to learn conformational heterogeneity from molecular dynamics
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) at the University of Luxembourg contributes multidisciplinary expertise in the fields of Mathematics, Physics, Engineering, Computer Science, Life Sciences and Medicine. Through its dual mission of teaching and
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AMMETIS[1] (AI-assisted Simulations of Microstructure driven MEchanical properties from high Throughput and multiscale analysIS), in the framework of PEPR DIADEM[2] , which aims to develop an advanced
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the visible region. The objectives of the PhD project are to develop novel photoactive NHCs and explore unprecedented photochemical reactivity of these unique species towards the activation of small
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problem. The ATHENA project (intelligent Automation of THErmodynamic cycles for a New energy Approach) aims to develop a new generation of digital tools capable of automatically designing innovative
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AMMETIS[1] (AI-assisted Simulations of Microstructure driven Mechanical properties from high Throughput and multiscale analysIS), in the framework of PEPR DIADEM[2] , which aims to develop an advanced
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Sklodowska-Curie Doctoral Network linking 21 academic, cultural, and industrial partners to develop advanced nondestructive evaluation and data-driven digital tools for paintings and 3D artworks (https
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being reachable within an hour train ride). Website: https://www.iemn.fr/la-recherche/les-groupes/physique/nanostructures-qu… In the digital age, the energy consumption of microelectronic devices presents
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; https://www.umontpellier.fr/articles/exposum-doctoral-nexus-sujets-de-t… Work Location(s) Number of offers available1Company/InstituteSanté Education et Situations de Handicap (SantESiH
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-assisted Simulations of Microstructure driven Mechanical properties from high Throughput and multiscale analysIS), in the framework of PEPR DIADEM[2] , which aims to develop an advanced characterization