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of the research environment of LPP, proposing a collaboration between the low-temperature plasma and the fusion plasma teams. Satellite electric propulsion is a technology that works with low temperature plasmas
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, combined with automated sampling and complementary physicochemical analyses. This collaboration will provide advanced training in the correlation between polymerisation, self-assembly mechanisms
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. The successful candidate will report to Béatrice von Hirschhausen, CNRS Research Director. The postdoctoral position forms part of a Franco-German collaborative research project (FRAL ANR/DFG project) involving
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a comprehensive model. A collaboration with the European synchrotron ESRF will enable us to determine the valence of metals in magmas. The magma ocean model will be applied, on the one hand, to
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abilities; • Ability to work both independently and collaboratively within a multidisciplinary research team; • Good written and spoken English. Previous experience with non-invasive neuroimaging techniques
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observational data. Experience with numerical simulations, effective field theories, or axion phenomenology is highly desirable. Beyond technical excellence, we seek a collaborative scientist committed to
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properties of this protein, as well as its interactions with other cellular components. The obtained results will be compared with available experimental data, in collaboration with our partners. We
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The project will be carried out in collaboration between
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mandatory. The candidate will be expected to evolve in an international environment, and take part in emerging national (through interaction with the PEPR LUMA network) and European collaborations (Silesian
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estimates in the early stages of a crisis and progressively refining them as the epidemic evolves. ENVIRONMENT This PhD thesis is part of a collaboration between the ARS and the CNRS, which began during