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on the study of the various mechanisms involved in ZnO growth. One objective is to identify the key mechanisms, particularly those related to the different ion fluxes involved. A molecular dynamics approach
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on a number of key skills: theorists in quantum chemistry, molecular and reaction dynamics, synthetic chemists, physico-chemists (spectroscopy, photochemistry, molecular recognition and analysis
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remains largely unexplored and represents a fascinating frontier for molecular computing. The development of new methods will be necessary to enable the manipulation of data within complex molecular
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research axis, aimed at gaining a better understanding of the molecular mechanisms involved in the regulation of the NF-κB signaling pathway induced by inflammatory cytokines, with an applied cancer research
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developing an AI-based digital twin to generate mechanistic targets and design therapeutic molecules using a dynamic prototype. IROC has generated datasets on mechanistic targets that need to be studied in
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university's main campus, IPBS benefits from a dynamic scientific environment within one of France's leading hubs for health sciences and biology. Further information is available at https://www.ipbs.fr
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sarcoplasmic reticulum (SR) with sarcomeres. This will require real-time imaging of the dynamics of these three organelles during flight muscle morphogenesis, as well as high-resolution optical and electron
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microbial hosts and viruses, as well as their impact on GHG emissions. The project will rely on both molecular approaches to detect viruses and their microbial hosts, and analytical measurements of CO₂, CH
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develop molecular biology tools (cloning, mutagenesis, etc.) required for microscopy experiments - Use standard cell biology and biochemistry protocols for sample preparation (transfection
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(pure and metal-doped) and carbon chains in supernova ejecta. • Apply molecular dynamics (MD) methods to simulate the formation of alumina agglomerates. • Use ab initio wave function methods to model