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expertise in HCI and education, including adaptive gamification, engagement, learning analysis, and the design of motivational affordances in education. As part of the project, the PhD student will work with
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spintronics team in charge of developing terahertz emitters and field-effect transistors based on two-dimensional (2D) materials such as transition metal dichalcogenides. He will work within the Spintec
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and with the 2AT team at Institut Pprime to develop a shape-optimisation tool based on resolvent analysis, applied to landing-gear aeroacoustics The researcher will develop a numerical methodology based
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streaming, and perform a complete landform analysis and glaciodynamical reconstruction of a possible former Kasei ice stream. In detail, the project objectives are: (1) Test the hypothesis that an ice stream
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structure and cross sections at the Z frontier of the periodic table is one of the key questions currently being addressed by the scientific community. The existence of the heaviest superheavy elements (SHE
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, dielectric patterning by RIE, pattern transfer into MBE-grown III–V heterostructures by ICP etching, and metal deposition for electrical contacts. The candidate will use a broad set of characterization
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different forms of selenium, ranging from Se metal to a more oxidised form (SeO2). The materials produced will be characterised by XPS spectroscopy to determine the speciation of Se. We plan to obtain access
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research comprises an experimental component and a theoretical/modelling component. For the former, the PhD student will be responsible for the chemical synthesis of plasmonic nanostructures and the physico
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the field. Perform quantitative analysis and agent-based modeling of behavior. Report, discuss, and present data to the team. The position is for 36 months. Laboratory work using virtual reality (VR
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analyses made possible by the JWST and ALMA telescopes. The Strasbourg Observatory is responsible for the spectroscopic component of CIGALE2D. In a first phase, the successful candidate will test the