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Field
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a range of characterization techniques, including X-ray diffraction, electron microscopy, X-ray photoelectron spectroscopy, as well as various electrochemical measurements, with opportunities
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links these to spectroscopic and computational approaches with the same crystals for validation of redox and ligand states. The group carries out experiments at Diamond and several different X-ray free
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of PERIOD clock proteins in the context of cytosolic or nuclear PER/CRY/CK1 containing complexes, employing in vitro protein biochemistry, high resolution 3D structure determination by X-ray crystallography
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, radio, and X-ray astronomy, stellar evolution and dynamics, gravitational lensing, cosmology, and pulsar studies. Course organisation All graduate studies (for Master and PhD) at our department
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, photon science, materials science and ultrafast X-ray science. What these data challenges have in common is that they cannot be addressed with standard computational methods but rather require modern data
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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, cultural heritage
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the experimental techniques employed, this PhD position will focus on (operando) X-ray absorption spectroscopy, X-ray total scattering, and vibrational spectroscopies Profile Applicants for this PhD position
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situ characterization tools available in the laboratory (X-ray diffraction, XPD, AFM, electrical and transport measurements, etc.), and also from the team’s dense collaborative network. Scientific
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PP12 - Mathematical modelling and cross species validation of a unified omic framework for muscle function Université Grenoble Alpes, Grenoble, France PP13 - Combined Magnetic Resonance and X-ray phase
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(electron microscopy e.g. EPMA, SEM, and X-ray methods e.g. µCT, XRD) Preparing and evaluating solution analyses using ICP MS/OES Publishing and presenting research results at national and international