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are associated with specific space-time signatures in the EGM measured by multipolar catheters, and that such signatures can be captured by suitable GSP tools exploiting the catheter configuration. To test this
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interventions, creating environmentally sustainable devices, and developing simulators to reduce reliance on in vivo testing. The training network is interdisciplinary, integrating various fields such as
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examine the ambivalent and multifaceted democratic legacy of royalist radicals in early nineteenth-century France and Europe. As a PhD candidate and central researcher in this project, you will work with
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to monarchical governments is often overlooked. In the project “Royalist Radicals”, we will examine the ambivalent and multifaceted democratic legacy of royalist radicals in early nineteenth-century France and
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. The doctoral project will focus on three main research axes: 1. Evaluate and improve ice sheet models: propose original analyses to test model robustness, for example by studying the spread of results from
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the modification profiles of host tRNAs and rRNAs. To test this hypothesis, rRNA and tRNA will be purified from infected cells and analyzed by dRNA-seq to track changes in expression and modification profiles
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the influence of design and operational parameters, and propose optimized configurations to maximize energy conversion efficiency; - Participation in the design and assembly of the experimental test bench using
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Inria, the French national research institute for the digital sciences | Villeneuve la Garenne, le de France | France | about 1 month ago
knowledge of software development and related tools (version control, compilation, documentation, testing, debugging…); Taste for technological innovation Fluency in English technical Good writing skills
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testing, materials analysis by electron microscopy, and more. Rheology and hydration of silico-magnesia cements I. INTRODUCTION I.1 Context. Portland cement, the primary component used as a binder in
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, to understand particle formation and defect incorporation mechanisms. 2. Optimize the optical properties of G4V-NDs via original post-synthesis treatments, with in situ testing at the SOLEIL synchrotron