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the project partners (IMPMC, IPGP, IRAMAT), the postdoc will be responsible for building a comprehensive database of stained glass windows, including legacy data and newly acquired chemical, optical and
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standard solar cell manufacturing processes. The project will also include optical simulation tasks and advanced luminescence characterization experiments. The postdoc will also contribute to the design of
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polymer blending and colloidal lithography. Low-cost fabrication processes will be developed and optimized, and their performance will be analyzed using optical spectroscopy. Results will then be compared
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expertise in plant sciences, optical technologies, and data processing. The existing imaging Mueller polarimeter, which is sensitive to the microstructural properties of biological tissues, will serve as the
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for comparisons. The postdoc will participate in the organisation of these comparisons: general preparation of the facilities, welcoming and accompanying visitors, measurements and analysis of results. 3
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improve this chain and derive dead fuel estimates, which will be integrated into forest fire spread simulations conducted by another postdoc at the Météopole. Both postdocs will collaborate closely. Since
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to rely on physical simulation in order to understand the failure mechanisms involved. This postdoc is part of a European Union Public Interest Project (IPCEI) led by the company Schaeffler
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strong potential for research - Highly motivated young researcher - Human qualities to work effectively within a team and coordinate the research with students, postdocs and technicians. - Experience in