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plasma-assisted chemical vapor deposition (MPACVD); - Optimize the synthesis on the different types of substrates used; - Develop substrate preparation protocols designed to promote the adhesion of diamond
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to improve predictive performance and interpretability. By combining methodological innovation in AI with applications in human genetics, cancer genomics, and plant genomics, AI4GI aims to advance our
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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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are responsible for some of the morbidity, either directly or indirectly via their effect on disease transmission. This part of the project will benefit from the exceptional situation of the eradication plan
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materials and devices. The postdoctoral researcher will work in a stimulating scientific environment that promotes interaction, collaboration, and innovation, and will benefit from the collective expertise
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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