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. The candidate must have earned a PhD (or equivalent) in Chemical Sciences or Molecular Chemistry with a chemical synthesis-oriented and spectroscopy background. He/she should be able to work with independence in
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scale and the sample scale. - Establish links between microstructure and mechanical properties, by combining experimental and numerical approaches, with the aim of optimizing material performance. Within
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an access to comb sensing and computing function through single device element. So far, our team has also developed reservoir computing measurement setup based on microwave optomechanical detection scheme and
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bacterial growth, survival and tolerance under various stress conditions, particularly antimicrobial stress. * Performance of microbiology, bacterial genetics and molecular biology techniques. * Analysis
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versatility of the size and redox properties of the f-block elements. The second objective is to use these ligands to promote the formation of multimetallic assemblies in which the metal atoms are close enough
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high-resolution IPLSs from experimental MRT and RFD data, which when use as an input to the model reproduce experimental replication profiles with unprecedented precision, demonstrating that the IPLS is
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of individual charges in real time. Researchers will use advanced germanium-based materials with exceptional quantum properties to pioneer new methods for manipulating quantum states. The anticipated outcomes
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. - Process, analyze and interpret mass spectrometry data and complementary analytical data. - Assess the performance and limitations of the different approaches and propose methodological improvements
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team at IETR, CNRS, Rennes, France. Our research focuses on developing passive implantable biosensors that use backscattering to wirelessly transmit sensing data. The researcher will work in a
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The candidate will work on the scientific themes of the P2S2 project