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high-technology group operating in the aerospace, space, and defence sectors. The company designs, manufactures, and supports cutting-edge systems and equipment for civil and military applications. As
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. The doctoral research is part of the TIRIS Scalingup Microcoredeal project, which aims to develop micro-models with a focus on designing and fabricating models that bridge the gap between laboratory settings and
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: inverted-microscope imaging, organic-matter localisation, X-ray tomography (CT-scan) before and after dissolution. • Design and run CaCO3 dissolution experiments: O2 flux and pH measurements using
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(101125437), running from 01/12/2024 to 30/11/2029 2 PhD students to be recruited Website for additional job details https://emploi.cnrs.fr/Offres/Doctorant/UMR5248-PETKRA-014/Default.aspx Work Location(s
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materials. This PhD project is part of an original research-creation initiative combining engineering, life sciences and design. Its objective is to develop innovative experimental models to investigate
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remaining biologically interpretable? The PhD candidate will design and apply integrative computational workflows using methods such as multi-omics integration, spatial modelling, representation learning
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and supramolecular chemistry, physical and analytical chemistry, materials design, and photonics. Five teams are affiliated with the CNRS National Institute of Chemistry (INC), while the sixth is part
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. The candidate will be hosted within the Molecular Chemistry and Macromolecular Materials (C3M) department at CNRS-ICMPE, a multidisciplinary research environment dedicated to the design and synthesis of advanced
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fluorescence microscope optimized for imaging individual cells within microtumors. Through this work, the PhD candidate will receive hands-on training in the design, implementation, and optimization of a state
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to artifacts such as non specific absorption, parasitic reactions, or diffusion based resolution loss. In this project, we will design and control a surface modifcaiton process based on a double, photo