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of materials. The main activities will include: – adapting the generative LegoXtal code to the design of MOF coordination polymers and porous materials by assembling elementary molecular bricks in the generation
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a high-energy pump wave on a weak wave through cross-modulation. The main activity will be to develop and run numerical codes to describe the nonlinear propagation of optical waves in multimode fibers
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relevant from an interstellar perspective (ANR INTERSTELLAR project) produced by two types of original reactors (low-pressure premixed or diffusion flames). The analyses will be performed using laser
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students, and master's students, supported by 24 engineers, technicians, and administrative staff. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5635-MIKBEC-030/Candidater.aspx Requirements
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components developed as part of the project. 1. Perform a comprehensive study of the adaptive optics systems used in exoplanet astronomy, their actual performance, and identify the main causes limiting
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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The main objective of this project will be to study the electromagnetic susceptibility
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, attending conferences, supervising PhD and master students, reporting The researcher will join the group led by Alexia Auffèves, which has extensive experience in quantum energetics, thermodynamics, and
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mode of Pseudomonas aeruginosa XcpD secretin - main activity - Joint responsibility for the activity with the team leader. o Implementation and use of a positive genetic selection test o Implementation
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. This primarily experimental work will also focus on analyzing the radiation at the fiber output through the development of a modal decomposition system. The main activity will be to set up an experimental system
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collaboration with the project's principal investigator and partner laboratories, the postdoctoral researcher recruited at Praxiling will be responsible for the linguistic analysis and modeling of the multimodal