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Development: Design and maintain open numerical simulation codes to model these systems. - Scientific Collaboration: Collaborate with team members on this project and related research initiatives
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). Your main task will be to design, develop and conduct analyses of neural population dynamics in a human intracerebral dataset, working closely with the clinical teams at CHUGA and the national and
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matter exist in theories beyond the SM, and the WIMP (Weakly Interacting Massive Particle) is one of the best motivated of these candidates, as it allows to also solve the SM hierarchy problem, directly
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to multiple Bruker mass spectrometry platforms and regular interaction with Bruker proteomics experts and R&D teams. You will therefore gain experience at the interface of academia and industry-driven
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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
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combine density functional theory (DFT), molecular simulations, and machine-learning force field (ML-FF) development to uncover the factors controlling NHC–surface interactions and to model realistic
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industrial partners. - Construction of electrochemical cells incorporating specially designed magnetic field sources, including quantitative measurement of local magnetic fields. - Implementation of tools
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deliverables (report writing, oral presentations, publications, etc.) with close interaction with the various project partners. Required skills, knowledge, and experience: Knowledge and experience in fiber
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Ability to interact with multi-disciplinary staff and facility users English proficiency (working language at the ESRF) Working conditions Contract of 18 months, renewable for a further 6 to 18-month period
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position offers the opportunity to work at the cutting-edge synchrotron science, contribute to the design and implementation of novel instrumentation, and collaborate closely with a vibrant international