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and data analysis related to structural studies to be carried out in situ and operando using diffraction techniques (X-rays, neutrons). The activities involve setting up diffraction experiments and
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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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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
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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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worldwide. Its particle accelerator produces intense X-ray beams that are used by thousands of scientists each year for experiments in diverse fields such as biology, medicine, environmental sciences
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crystallography, specifically in the structure solution and refinement of small molecule crystals using either electron or X-ray diffraction techniques. While candidates with experience in structure analysis based
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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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Laboratory (https://amcl.udel.edu/ ), a shared core facility equipped with a Thermo Fisher iCAP TQ ICP-MS with laser ablation and chromatography capabilities, and a suite of X-ray diffraction and fluorescence
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completed in a relevant field of study. Knowledge of x-ray/optical/electron physics, including diffraction, optics, detectors, scattering etc. Experience with deep learning (DL) libraries such as Tensorflow
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microscopy, particle size and surface area analysis, density measurements, and X-ray diffraction. In-situ techniques such as thermogravimetric analysis and dilatometry will be applied, complemented by