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are united in our efforts to understand, explain and improve our world and the human condition. Summer Job at MAX IV – Help populating a Unique X-ray Spectroscopy Reference Library! Are you a chemistry student
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tasks are to probe the molten salt NaAlCl4 electrolyte chemistry by among others _in situ _Raman probe spectroscopy to investigate spatially resolved compositional changes during charging/discharging
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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | 11 days ago
to the Doctoral School of ILT&SR PAS https://phd.intibs.pl/files/dokumenty_EN/25-04-29-Zasady_rekrutacji_SD_INTiBS_PAN_en.pdf Description of the research project and the PhD thesis The proposed doctoral project
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days' annual leave, including RTT, for full-time work Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UPR3228-ALEGAS-062/Candidater.aspx Requirements Research FieldMathematicsEducation
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for homogeneous photocatalysis. Physico-chemical characterization Structural, optical, and electronic analysis of materials (spectroscopies, microscopies, electrochemistry, etc.) to establish structure–property
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application end stations to be used for imaging, absorption/reflection spectroscopy, and other quantum sensing techniques. Practical working knowledge and hands‑on experience with lasers and optics, spanning
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à élucider ces mécanismes en catalyse hétérogène, notamment sous conditions photo-assistées, en combinant la méthode d'échange isotopique en régime stationnaire (SSITKA) et la spectroscopie infrarouge
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the molten salt NaAlCl4 electrolyte chemistry by among others in situ Raman probe spectroscopy to investigate spatially resolved compositional changes during charging/discharging of the battery, and
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operation. Experience with high-pressure X-ray diffraction / scattering, optical spectroscopy in combination with diamond anvil cell (DAC) and Paris-Edinburgh (PE) techniques. Experience in interpreting
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engineer will contribute to the development, optimization, and operation of advanced microscopy devices, notably High-speed AFM and AFM-IR (atomic force microscopy coupled with infrared spectroscopy) and