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generation of laser sources. These devices are based on a physical separation between electrical addressing and optical emission, enabling the design of addressable Tamm lasers with high potential
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combine density functional theory (DFT), molecular simulations, and machine-learning force field (ML-FF) development to uncover the factors controlling NHC–surface interactions and to model realistic
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dilution while minimizing by-products. He or she will need to implement various techniques to best characterize the grafted functions. In particular, they will interact with the MolQIf consortium teams
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to the development of an innovative microphysiological system dedicated to modeling human beige adipose tissue organoids in a controlled metabolic environment. The candidate will design and implement advanced 3D
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be authorized by the competent authority of the Ministry of Higher Education, Research and Innovation (MESR). Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8180-DAVKRE-007
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on multiscale study of hydrogen embrittlement in steels. The primary mission of the postdoc is to support experimental efforts as well as large scale simulations by means atomistic simulations. Designing and
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multiple species co-exist in sympatry. Among some sympatric species, a parallel evolution of dorsal color pattern has been observed (Llaurens et al. JEB, 2021) and substantial heterospecific interactions
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will be analyzed to produce design recommendations for regulators, professionals, and the general public. The work will be carried out at the LIRIS Laboratory (https://liris.cnrs.fr/ ) on the LyonTech-La
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quite new within the field of computer vision. The neuromorphic design allows for a much higher acquisition frequency but most and foremost much longer acquisition time spans. This makes it ideal
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they produce, in collaboration with industrial partners, and through access to the unique experimental facilities of SLICES-RI. The project is deeply embedded in regional and international Research & Innovation