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Field
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supporting laboratories. The techniques offered at our diffraction beamlines have a strong focus on engineering materials science. The Doctoral Network 'ElectronsMatter', funded by the Marie Sk?odowska-Curie
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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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Precession Electron Diffraction (SPED) into an existing and well-equipped (S)TEM environment and the development of robust data analysis routines to enhance nanoscale orientation and phase analysis in aluminum
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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Beamline Scientist Specialized in High Pressure Diffraction on ID27 Beamline ESRF
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with expertise in electron diffraction. Candidates should be capable of preparing samples, independently collecting data, and solving and refining crystal structures, including those
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synchrotron studies are carried out all over Europe (Petra III, Max IV, ESRF, Soleil, Diamond Light Source,...) and include High Energy Surface X-ray Diffraction (HESXRD) for surface structure determination
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PhD student at ILL: studying In situ neutron diffraction for green steel and functional metal oxides
include oxides of chromium, iron, tungsten and the strongly correlated electron systems in SrFeO3−𝛿, LaNiO3 and SrRuO3. In situ neutron diffraction will allow to extract structural details including oxygen
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, Max IV, ESRF, Soleil, Diamond Light Source,...) and include High Energy Surface X-ray Diffraction (HESXRD) for surface structure determination, and gas phase X-ray Photoelectron Spectroscopy (XPS
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ESPCI Ecole supérieure de physique et de chimie industrielles de la ville de Paris (PSL) | Paris 15, le de France | France | 16 days ago
19 Mar 2026 Job Information Organisation/Company ESPCI Ecole supérieure de physique et de chimie industrielles de la ville de Paris (PSL) Research Field Engineering » Electronic engineering
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spintronics. Specifically, electron spectroscopy, electron diffraction, and scanning tunneling microscopy techniques will be used in vacuum. Magneto-optical characterizations will be performed on an optical