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6 Mar 2026 Job Information Organisation/Company CNRS Department Institut P': Physique et Ingénierie en Matériaux, Mécanique et Énergétique Research Field Engineering Chemistry Physics Researcher Profile Recognised Researcher (R2) Application Deadline 26 Mar 2026 - 23:59 (UTC) Country France Type...
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on the implementation of an innovative technique called 3D-AFM (the only one of its kind in France) that makes it possible to characterize liquid/solid interfaces at the nanometric scale by studying the behavior
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Laboratoire INSERM UMR1311 Rouen Normandie Université | Rouen, Haute Normandie | France | 6 days ago
on three main Workpackages (WPs): • WP1: Characterizing the inflammatory response and airway remodeling in a novel 3D model of Apical-Out Airway Organoids (AOAO) derived from pediatric asthmatic patients
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of EOM 3D anatomy and ex vivo contractility data, high-speed video oculography and head tracking in mice using deep learning-based pose estimation, and implementation of Hill-type muscle models
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, B.; Palmero, P.; Tulliani, J.-M. MOFs Functionalization of 3D Printed Mullite Complex Architectures for CO2 Capture. Applied Materials Today 2024, 40, 102407. https://doi.org/10.1016/j.apmt
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3D X-ray diffraction (3DXRD). Each of these in situ measurements are already available at specific synchrotron beamlines. However, they have never been applied on microbatteries or in a correlative
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and several natural isoforms (see Figure). Their mechanism targets lipopolysaccharide (LPS), with a 3D structure stabilized upon LPS binding, paving the way for effective, and low-toxicity analogs. In
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-EM Single Particle Datasets Using 3D-to-2D Flexible Fitting based on Molecular Dynamics Simulation. J Mol Biol, 2023. 435(9): p. 167951.https://hal.science/hal-03929029 [3] Valimehr, S., et al
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Cryo-EM Single Particle Datasets Using 3D-to-2D Flexible Fitting based on Molecular Dynamics Simulation. J Mol Biol. 2023;435:167951. https://hal.science/hal-03929029 [3] Valimehr S, Vuillemot R, Kazemi
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, to reduce the computational cost of the simulations. This approximation neglects transverse propagation effects, which is a strong assumption given the inherently three-dimensional (3D) nature of the flow