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a PhD degree in one of the following disciplines: energy systems, data analytics, quantitative methods, mathematics, engineering or other relevant discipline, have commensurate research which includes
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work within the “JLab-EIC” hadronic physics team of the “High Energy Physics” (PHE) pole of the Laboratoire de Physique des 2 Infinis Irène Joliot-Curie (IJCLab) under the supervision of Dominique
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architecture and differentiation contexts. The PhD candidate will develop protocols for isotope labeling, sample handling, and NMR acquisition in stem cell-derived 3D tissues. Recommended literature: Theillet FX
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sense, and process information locally has never been greater. Traditional architectures that separate sensing and computation create bottlenecks in speed and energy efficiency. This PhD project aims
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materials to enhance the cell robustness. Work plan The work plan for the PhD thesis will be divided in three main steps: 1) A chemo-mechanical model will be built to predict the crack initiation and
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for meetings, progress reports and conferences Any other tasks as requested by the Investigator Job Requirements: PhD in engineering or relevant discipline Demonstrated strong knowledge in the field of solid
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of these datasets with state-of-the-art computational methods. The successful candidate will collaborate with 2 PhD students on the project. Where to apply Website https://www.academictransfer.com/en/jobs/357581
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- Microfluidic devices to study microbe-host cell interactions in organoid/spheroids using UCNPs in biological fluids - Eluceda (UK), Supervisor: Dr. Ian Eastwood DC13 - Microfluidic electrometric devices
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full-time Research Assistant position (Pre-doc). Candidates should have a strong interest in research in applied microeconomics. The work would relate to several research projects in the areas of Energy
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, guaranteeing a reliable supply of energy and drinking water is becoming increasingly challenging due to geopolitical tensions and climate-related disasters. In several regions around the globe, energy