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research comprises an experimental component and a theoretical/modelling component. For the former, the PhD student will be responsible for the chemical synthesis of plasmonic nanostructures and the physico
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for autonomous vehicles, and exoplanet detection. Among the various platforms capable of generating frequency combs, high-quality-factor resonators stand out for their ability to produce broad and stable combs
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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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plausible deployment pathways. Numerical simulations will first be conducted in isolation, focusing on OAE alone, and will then be extended (in collaboration with other PhD students and postdocs) to combined
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research environment involving several PhD students and postdocs, and strong regional and international connections, with collaborations with the University of Geneva and CERN. Terms of Employment
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elements) within the specific context of hybrid environments, alternating group-based TPE sessions at hospital with individual activities at home. Initially, the focus will be on identifying relevant game
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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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on a resolvent formulation of the Boundary Element Method. He/she will apply this tool to perform the shape optimisation of a landing gear. He/she will then carry out the experimental validation
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necessary to robustly extract the various constituent elements of the comic book (detection of panels and speech bubbles, text recognition, segmentation, and character identification), and then to structure
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elements - A letter of motivation. - Two letters of recommendation, at least one from your master project supervisor. - Proof of academic record from official grades or transcripts. Where to apply Website