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Arts et Métiers Institute of Technology (ENSAM) | Paris 15, le de France | France | about 6 hours ago
Technology is proudly certified as a BCorp® and recognized as a Great Place to Work®. Ph.D. project in a nutshell: The digital transformation of industrial processes relies on sophisticated instrumentation
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, we will make full use of X‐ray Absorption Spectroscopy (XAS), including X‐ray Magnetic Circular Dichroism (XMCD) - an inherently element- and orbital-selective technique - alongside X‐ray diffraction
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to quantum physics. This project is part of an interdisciplinary research program. The successful candidate will join a collaborative team where bioinformaticians and experimentalists work closely together
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and Physical chemistry (ED182) of the Université de Strasbourg. He or she will work in the BIODYN team (“Biophysics and Dynamics of Organic Nanostructures”: a research team led by J. Léonard and S
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University of Quebec at Rimouski (Canada), the Chrono-Environnement Laboratory (France) and GEODE (France). Within ISEM, He will be under the supervision of Prof. Adam A. Ali and collaborate closely with
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stacking, both high performance and (very) high density can be achieved by this concept. The mission will be to explore, understand and develop the fundamental physics of device operation. This will require
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interdisciplinary, and together we contribute to science and society. Your role You will join the recently established Chemical and Molecular Neurobiology group led by Associate Prof. Ivana Nikić-Spiegel at the LCSB
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The PhD work will take place in the framework of the ANR funded HENBoS project (2025 – 2029), which seeks to describe with unprecedented accuracy and scope massive black hole systems as cosmic accelerators
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department at IETR in inkjet-printed OTFT fabrication and is part of the ANR-funded SMOOTH (Stable Metal-free Organic transistOrs Thanks to Homojunction) project, which will start in February 2025 and run
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and optimize specific functions. The ICMCB carries out fundamental research on model materials and/or materials with potential applications. The ICMCB is a UMR with an average of 280 agents (permanent