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Field
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, optimization, and characterization integrating imaging, experimental metadata, and diffraction outcomes. Design and deploy computer vision methods to detect and track crystal growth. Develop closed-loop
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characterize inorganic compounds or materials using techniques such as X-ray diffraction, NMR spectroscopy, and electron microscopy. Analyse experimental data, interpret results, and contribute
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analysis using techniques such as: a. X-ray diffraction (XRD) b. Raman spectroscopy c. BET surface area analysis d. Scanning electron microscopy (SEM) e. Thermogravimetric analysis (TGA) Assist with battery
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phase change materials used in photonic devices, using synchrotron X rays and X ray free electron lasers (XFEL). Optical phase change materials can be reversibly switched between amorphous and crystalline
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molecule crystals using either electron or X-ray diffraction techniques. While candidates with experience in structure analysis based on powder diffraction, neutron diffraction, or scattering data will also
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-ray fluorescence microscopy, x-ray absorption spectroscopy, and/or x-ray diffraction Strong record of accomplishment in cultural heritage research Interest and ability to work in a collaborative
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» Computer engineering Researcher Profile First Stage Researcher (R1) Positions PhD Positions Application Deadline 16 Aug 2026 - 23:59 (Europe/Zurich) Country Switzerland Type of Contract Temporary Job Status
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collaborate with various partners in the consortium, including partners working on catalyst synthesis, complementary surface X-ray diffraction, and complementary (in situ) electron microscopy. Secondments
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. Advanced data interpretation using electron diffraction, dendritic growth modeling, and REE behavior in Fe-rich matrices. Competences & Personal Qualities Excellent English communication skills (oral and
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Essential Application Experience in cold sintering Desirable Application/interview Experience of standard materials characterisation techniques including X-ray diffraction, scanning electron microscopy, FTIR