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to several aspects of the project, including: -design, development and validation of experimental optical microscopy setups -modelling and optimization of experimental parameters -adaptation and further
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of medieval glass studies in accordance with the work plan; • To disseminate research through open access publications in peer-reviewed journals; To participate in international conferences and seminars, and
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encouraged to contribute experimental ideas and analysis methods as well. The postdoc will be involved in experiment design, stimulus creation, participant recruitment and testing, data analysis, writing
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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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of the project is to design, model and simulate neural networks based on magnetic skyrmion nucleation and propagation. The second objective is to fabricate these hardware neural networks, characterize
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. These scenarios will be evaluated and enriched by working groups composed of various stakeholders such as operators, designers, ergonomists, etc. Our objectives will then be to examine different design hypotheses
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to the development of an innovative microphysiological system dedicated to modeling human beige adipose tissue organoids in a controlled metabolic environment. The candidate will design and implement advanced 3D
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, the energy efficiency of buildings is a major challenge. Building envelopes, designed to protect occupants from external climatic variations, play a key role. Over the past 50 years, numerous models have been
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innovation, excellence, and flexibility to work and achieve results. Strong communication skills in English are essential. Proficiency in French is not required. Website for additional job details https
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plasma-assisted chemical vapor deposition (MPACVD); - Optimize the synthesis on the different types of substrates used; - Develop substrate preparation protocols designed to promote the adhesion of diamond