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to develop, optimize and apply advanced mass spectrometry approaches for the structural and molecular characterization of ARDCs, and to analyze and interpret the resulting data. - Develop and optimize mass
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antimicrobial stresses, with a particular focus on post-transcriptional RNA modifications and their role in translational regulation. The project will focus more specifically on clinical *Escherichia coli
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order to identify the possible presence of organized interstitial oxygens; • Working in close collaboration with the project's theoreticians to interpret the experimental results within the framework
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use numerical models to interpret and predict mechanical behavior. - Carry out a cross-analysis of experimental, microstructural, and numerical results. - Disseminate scientific results (publications
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responsibility. 3) Scientific analysis and interpretation: - Develop advanced analysis methods to quantify bedload transport: full responsibility. - Interpret results and propose explanatory models: primary
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, interpret and disseminate experimental results. Contribute to the preparation of scientific publications, project reports and presentations at national and international conferences. Participate in
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. The position is funded by European and national research projects. The contract is initially for 24 months, with possible renewal subject to available project funding. Where to apply Website https
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analyze multi-omic data provided by our collaborative partners and interpret the results from a biologically relevant perspective. Planned activities include Python code development, the analysis and
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out the cleanroom microfabrication of optomechanical systems intended for gravity sensing. Define and conduct experimental protocols for characterizing the fabricated devices. Analyze, interpret, and
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. The research group combines computational predictions with experimental validation to understand how the molecular properties of intrinsically disordered proteins are translated into cellular organization and