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distribution. For ideal sources and optical surfaces we can solve the so-called Monge-Ampère equation to find the freeform shapes of the surfaces. Scattering elements however send light rays in multiple
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project include: Performing advanced studies using state-of-the-art methods in X-ray imaging and scattering and electron microscopy to study porosity, intermetallic inclusions, solute segregates and
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biological systems, and study biological and designed proteins using a combination of classical and advanced techniques including optical and NMR spectroscopy, surface plasmon resonance, light and X-ray
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in a vibrant and multidisciplinary and multinational environment (E) Experience in X-ray diffraction/imaging/spectroscopy techniques preferably synchrotron based (D) Experience in raising key issues
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Preparation of and participation in X-ray scattering experiments at world leading large-scale facilities for neutrons (ILL in Grenoble, ESS in Lund) and X-rays (PETRA III and EuXFEL in Hamburg, ESRF in Grenoble
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• Strong background and training in biochemistry, chemistry and biophysics. • Experience should include some or all of the following: experience with the characterization of proteins using cryo-EM, X-ray
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methods for nanoparticles (including light scattering, X-ray scattering) will be an advantage. Experience with microbiological assays will be an advantage. Language requirement: Good oral and written
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characterization of carbon materials or biomass valorization Knowledge of sodium- or lithium-ion batteries Experience with characterization tools such as total X-ray scattering and pair distribution function (PDF
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environment for reactors in serial production for operando studies Operando investigation of catalyst structures using high energy X-ray methods (scattering, spectroscopy, imaging) using in-house- and
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and operate world-class synchrotron x-ray facilities in the areas of small-molecule crystallography, liquid interface scattering, and anomalous small and wide-angle scattering to serve the needs