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scaled up to industrial production. - Development of purification and separation methods - Structural and textural characterization of porous materials - Performance measurements in gas separation tests
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techniques to assess process outcomes, material quality, and device performance, including optical microscopy, photoluminescence, scanning electron microscopy (SEM), atomic force microscopy (AFM), x-ray
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. Through molecular engineering of these hosts, PhOLEDs performance have been significantly increase, with external quantum efficiencies now exceeding 35%. Our group, based at the Institut des Sciences
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physical modelling to better understand the physical and chemical phenomena underlying plasmonic activity, with the goal of developing high-performance materials. In this context, the PhD student will be
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reconstruction methods in DUNE, using both simulations and charged particle beam data from protoDUNES - Compare the performance obtained with single-trace events in the protoDUNE and SBND detectors - Study the
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the field. Perform quantitative analysis and agent-based modeling of behavior. Report, discuss, and present data to the team. The position is for 36 months. Laboratory work using virtual reality (VR
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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
will be performed using transmission electron microscopy (TEM) and time-of-flight secondary ion mass spectrometry (TOF-SIMS), providing access to atomic-scale structural and chemical information. Ion
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Paris-Saclay, in the ThéoSim group. The direction of the PhD will be performed by Dr Fabien Cailliez (fabien.cailliez@universite-paris-saclay.fr , HDR) with a co-direction by Dr Aurélien de la Lande
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-CoV-2). 1. Conduct research, from setting up experiments to writing up results : - Perform multidimensional heteronuclear NMR spectroscopy experiments - Prepare protein samples for NMR spectroscopy
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transformations, providing sustained growth by way of fertilizer production. Notwithstanding, due to high functioning temperature and pressure, this 'simple' reaction accounts for greater than 1-2% of our annual