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to two orders of magnitude increase in the available coherent X-ray flux. This primarily benefits techniques like coherent diffraction imaging (CDI), holo-tomography, ptychography which can image samples
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for scanning diffraction and fluorescence mapping experiments. Your role We are now looking for a temporary researcher with a background in (coherent) scanning probe-based x-ray techniques to join the NanoMAX
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Science Beamline (P61A/WINE), the lmaging Beamline (P05/IBL), and the Nanofocus Endstation of Micro? and Nanofocus X-ray Scattering Beamline (P03/MINAXS), along with supporting laboratories (https
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organic pollutants. This would require knowledge in the design and synthesis of porous frameworks, particularly in techniques such as Schlenk line, glove box, powder X-ray diffraction, electron diffraction
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transmission electron microscopy (TEM), atomic force microscopy (AFM), and X-ray diffraction (XRD), etc. Prepare manuscripts, reports, and presentations for internal discussions and external publication
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disciplines: - Shock physics, - Phase transition mechanisms, - Materials science. They must also be proficient in one or more of the following techniques: - X-ray diffraction, - Velocimetry, - Thermomechanical
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Endstation of Micro‑ and Nanofocus X-ray Scattering Beamline (P03/MINAXS), along with supporting laboratories (https://gems.hereon.de). The techniques offered at our diffraction beamline P61A have a strong
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is High-Throughput Automation, leveraging rapid manufacturing via Directed Energy Deposition (DED) coupled with a rapid characterisation pipeline that includes X-ray diffraction, thermal analysis
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information about the main supervisor of the project, please see: https://www.sljus.lu.se/pablo-villanueva-perez Work duties MAX IV is the first operational diffraction-limited storage ring in the world
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mechanical tests (hot tensile tests) ; - Knowledge of X-ray diffraction and the use of synchrotron beamlines, preferably at high energy ; - Fluency in oral and written English ; - Ability to process