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. The HEXAPIC project aims to develop a novel high-performance Particle-In-Cell (PIC) code for plasma physics simulations, leveraging the capabilities of exascale computing systems. By optimizing PIC algorithms
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. - Development of an ICP-MS/MS measurement method (choice of reaction/collision gas, optimization of measurement parameters, correction of mass bias, etc.) to eliminate interferents and achieve the best possible
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The candidate will optimize an instrumentation and a microfluidic card for encapsulating human cells in monodisperse microbeads of extracellular matrix. Within a few days, cells encapsulated in
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their formation, and the process optimization in relation to the target applications. Another key challenge relies on the source of energy for the graphitization. The conventional heating during the catalytic
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Post-doctorate position (M/F) : Exascale Port of a 3D Sparse PIC Simulation Code for Plasma Modeling
to exascale architectures an initial 3D simulation code developed as part of previous work [1]. This work will initially focus on scaling up (distributed memory), optimizing CPU algorithms (vectorization) and
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13 Mar 2025 Job Information Organisation/Company CNRS Department Centre de Recherche sur la Biodiversité et l'Environnement Research Field Environmental science Biological sciences Geosciences Researcher Profile First Stage Researcher (R1) Country France Application Deadline 2 Apr 2025 - 23:59...
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. optimizing the quality of the transverse beam leaving the OPO for correct injection into the optical fiber; 2. testing new types of fiber (hollow-core in particular) to homogenize the beam while reducing power
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Process: designing, preparing, shaping and characterizing materials in order to discover, control and optimize specific functions. The ICMCB carries out fundamental research on model materials and/or
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phenotypes • Analyze images and other data • Optimize induced pluripotent stem cell (iPSC) protocols • Disseminate and enhance research findings • Establish standard operating procedures (SOPs) This project is
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researcher to contribute to a project focused on optimizing light diffusion in phase-separated glasses. These glasses, characterized by the coexistence of multiple glassy phases, exhibit a nanoparticle-in