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, Nature Energy 2024] to image operating perovskite solar PV cells with high spatial (hundreds of nanometers) and temporal (hundreds of picoseconds) resolution. This project will push these capabilities
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– Trustworthy Computing Group Context of the position The Trustworthy Computing Group in the Department of Electrical and Computer Engineering (ECE) at the University of Delaware (UD) invites applications for a
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Contract type : Fixed-term contract Level of qualifications required : PhD or equivalent Fonction : Post-Doctoral Research Visit About the research centre or Inria department The Inria centre
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questions we aim to tackle as part of this project are: Why are only some bacteria capable of performing one or both processes? Under which environmental conditions do organisms that can execute both
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; representation from three continents). Our lab’s strength lies in integrating multiple disciplines: Single-cell microfluidics Quantitative (image) analysis Mathematical modelling Microbiology Molecular biology We
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, including basic processing of photoemission data, as well as more advanced processing for HAXPES data or photoemission imaging. *Participate in measurements at large-scale facilities such as synchrotrons
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light sources, quantum frequency conversion and quantum processing nodes. The current position will be within a project aiming at developing quantum network nodes with laser cooled atoms, including highly
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Inria, the French national research institute for the digital sciences | Paris 15, le de France | France | about 4 hours ago
to contribute to other ongoing activities of the QAT team: https://qat.inria.fr/projects The postdoc will also be involved in the supervision of interns and PhD students. While there is no teaching requirement
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quantum memories, quantum light sources, quantum frequency conversion and quantum processing nodes. The current positions will be within a project aiming at developing quantum repeaters using solid-state
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), I³ (Inorganic–Isotopy–Imaging), ECOMES (emerging contaminants, speciation, and omics), Surface and Interface Characterisation, and Microbiological Characterisation. Together they enable an end‑to‑end