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Postdoctoral position (M/F) on impedance and dielectric study of solid/solid interfaces in batteries
remain a dominant technology for the foreseeable future, with an enormous increase in demand. In this context, there is a strong incentive for battery manufacturers to accelerate the design of LIBs with
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Innovation. The project focuses on detecting radioactive contaminants in liquids. The postdoctoral researcher will participate in the production of materials and contribute to the development of dedicated
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criteria - Emerging technologies modeling, - circuit simulation and design. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR5270-SYLGON-070/Default.aspx Work Location(s) Number
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millifluidic environments by investigating the influence of select biopolymers and medium formulations on bacterial and nutrient transport. Fluidic layers will be designed to simulate relevant sediment grain
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. In this project, we aim to develop digital tools combining density functional theory (DFT) and machine learning (ML) to accelerate the in-silico design of solid catalysts for the DA process. - Perform
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through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The postdoctoral researcher will design
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technologies within our laboratory. - Design and develop processes for synthesizing hollow fiber membranes to meet the specific needs of our research and development projects. - Design and develop processes
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. On the EIC side, the successuful candidate will participate in the detector effort around the Roman pots. IJCLab is involved at various levels in the project, in design, cooling, and electronics testing
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Astroparticle domains, covering GW, Gamma & X-rays, neutrinos, CR, radio, optical. Within this project, Gammapy will be improved to enable multi-messenger data analysis workflows. Where to apply Website https
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, 024047 (2025); arXiv:2503.23593 (2025) - Design and lead quantum optics experiments based on the resonant excitation and coherent optical pumping of artificial atoms (semiconductor quantum dots