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regimes; and machine learning, capturing complex nonlinear behaviour at the cost of model opacity. BENEFIT synthesises these paradigms by integrating stability analysis directly into machine learning
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systems (LIED, Université Paris Cité), experts in classical atomistic simulations (molecular dynamics and coarse-graining, LMCE, CEA/DAM/DIF), as well as specialists in continuum simulations (finite element
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possibilities for automating the analysis of comic book pages, linking elements together, and generating narration scripts. The EnACA Project aims to develop a toolchain ranging from the automatic analysis
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shaping will be central to the study. The numerical model will be based on the boundary element method (BEM) and semi-analytical approaches developed at I2M. The experimental proof-of-concept will leverage
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streaming, and perform a complete landform analysis and glaciodynamical reconstruction of a possible former Kasei ice stream. In detail, the project objectives are: (1) Test the hypothesis that an ice stream
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expertise in HCI and education, including adaptive gamification, engagement, learning analysis, and the design of motivational affordances in education. As part of the project, the PhD student will work with
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, dielectric patterning by RIE, pattern transfer into MBE-grown III–V heterostructures by ICP etching, and metal deposition for electrical contacts. The candidate will use a broad set of characterization
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different forms of selenium, ranging from Se metal to a more oxidised form (SeO2). The materials produced will be characterised by XPS spectroscopy to determine the speciation of Se. We plan to obtain access
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environment at the CNRS Coordination Chemistry Laboratory in Toulouse, France, as part of the “Molecular Design of Transition Metal Catalysts” group. This PhD position is funded by the ANR through the project
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carry out in the METAL (metals and alloys) group.There will be some occasional stays at IJL Nancy. Comparisons between the experimental results of this thesis and multiscale simulations conducted