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Description of the offer : Join our team for a postdoctoral position focused on advancing Spin-Orbit Torque (SOT) based Magnetic Tunnel Junctions (MTJ) for embedded non-volatile memory applications
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live in. Your role The CLAIM and ICR groups are seeking an outstanding postdoc to strengthen their research teams with expertise in Large Language Models, more precisely in Agentive Reasoning and LLM
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increase in the number of strains that are multi-resistant to antifungal agents is leading to a growing incidence of two other species, C. glabrata and C. auris. Being a complex and dynamic structure
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will be based on simulated and real data collected from beamline experiments and will require collaboration with specialists in physics, optics, and instrumentation. The position involves both
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the Department of Infection and Immunity, and its research focuses on regulation by post-translational modifications and changes in the protein-protein interactome using mass spectrometry-based techniques
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scales, requires the epitaxial growth of magnetic insulators in thin and/or very thin films. The PhD work thesis will focus on the growth of ultra-thin YIG layers by Liquid Phase Epitaxy in Pb-based and Pb
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based on the birthplaces of their grandparents and were genotyped (for ~9,700 of them) or sequenced (3,998 Illumina short read whole genome sequences 30X). The successful candidates will be responsible
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de novo profile of m6A sites by detecting increased mismatches around modified RNA bases [16] or by focusing on specific types of sequences through fraction modification values [17].Here, we propose
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zebrafish and mouse lines Develop phenotypic rescue assays, based on selected readouts, in the generated disease models to test small molecule drug candidates Modern data management and precise project
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Postdoctoral position: Developing a human lymphoid organ-on-chip to evaluate candidate mRNA vaccines
. To address this issue, we developed a lymphoid organ-on-chip (LO chip) model based on a microfluidic chip seeded with human PBMC at high density within a 3D matrix. Perfusion of the SARS-CoV-2 Spike