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part of the Forschungsverbund Berlin (https://www.fv-berlin.de/ ) and the Leibniz Association (https://www.leibniz-gemeinschaft.de ). You can find more details on the institute webpage: https://www.ikz
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. All aspects of this work are performed 'in house' using NIST's state-of-the-art nanofabrication, molecular beam epitaxy, and low-temperature optical spectroscopy tools. The successful candidate will
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analyse de l'air exhalé. La spectroscopie photoacoustique (PAS) est une technique optique qui permet de détecter les concentrations de gaz en mesurant les ondes sonores produites lorsque la lumière laser
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of the obtained materials using elemental analysis, nuclear magnetic resonance (RMN), ICP-OES, infrared spectroscopy (IR), ultrared-visible spectroscopy (UV-Vis) and Raman spectroscopy, X-ray diffraction, X-ray
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Theory; Computational Physics; X-ray Spectroscopy; Electronic Structure; Ultrafast Dynamics , Condensed Matter Theory , Hard Condensed Matter Theory , High Performance Computing , many-body quantum
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Physics; X-ray Spectroscopy; Electronic Structure; Ultrafast Dynamics , Condensed Matter Theory , Hard Condensed Matter Theory , High-temperature superconductivity , Quantum Condensed Matter Theory
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of their fundamental properties. Relevant Keywords: advanced material synthesis, ultrafast phenomena in solids, electronic properties, light-matter interactions, optical spectroscopy, quantum transport, and advanced
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fertilizer formulas. Characterize produced fertilizer formulas using various physicochemical and analytical tools such as spectroscopy, microscopy, porosity analysis, to assess structure-property relationships
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star and planet formation research group led by Dr Emma Whelan. For more information on the work of the group please see https://www.maynoothuniversity.ie/physics/our-research . This position is part of
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(confocal, multiphoton, fluorescence resonance energy transfer, total internal reflection fluorescence) and Flicker spectroscopy. You will also engage with neutron scattering researchers in mapping DIB