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position within a Research Infrastructure? No Offer Description The Center for Intelligent Optics (CIO) develops advanced optical technologies, including imaging, spectroscopy, and laser ablation methods
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We are inviting applications for a postdoctoral associate position in Physical Chemistry. Traditional microwave or infrared laser spectroscopy is limited by restrictive selection rules, particularly in
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Inria, the French national research institute for the digital sciences | Paris 15, le de France | France | 5 days ago
, nonverbal behavior, inter-brain synchrony). Knowledge of hyperscanning technologies, particularly functional Near-InfraRed Spectroscopy (fNIRS). Familiarity with the NIRx system is a plus. Analysis of
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of stabilization or leaching of trace metals in slag. To this end, various chemical, mineralogical, and structural characterization techniques will be used: LA-ICP-MS, HT-XRD, XRF, X-ray absorption spectroscopy
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, ultrasound withelastography, DEXA, CT including spectral CT, MRI including spectroscopy and elastography). Thesuccessful candidate is expected to actively contribute to the research activities of the LeiCeM
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in any of the following methods will be advantageous: Single-crystal crystallography, Powder X-ray diffraction, NMR, UV-vis, IR and Luminescence spectroscopy, electrochemistry. The candidate will hold
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characterizations using time-resolved spectroscopies to analyze excited states • Contribute to the selection of the most efficient materials for larger-scale production • Write work reports and deliverables, and
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(electrochemistry, spectro-electrochemistry, absorption spectroscopies) - Large-scale electrocrystallization and sample shaping for electric measurements Laboratory work involving the wearing of PPE during
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of nanoparticles inorganic or organic (e.g: polymeric-based nanoparticles, silica-based; metallic-based,etc) and characterization techniques (e.g: DLS, Z-potential, spectroscopy techniques, etc). Competences and
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challenging chemical bonds (N–H, O–H, and C–H) under mild conditions. The project combines plasmonic materials, photoelectrochemistry, and ultrafast laser spectroscopy to investigate and control charge transfer