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Materials and Processes) joint laboratory, a collaboration between the University of Haute-Alsace, the CNRS and Arkema. The PhD student will therefore benefit from an academic and industrial research
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understanding of catalysis beyond the first coordination sphere. The PhD student will be in charge of the study of the electrochemical and spectroscopic studies of the new cobalt complexes in homogeneous solution
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free of any toxic or expensive metals. As part of a European project, the LRCS will be responsible for mastering the preparation of high-performance insertion materials for this new type of energy
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the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The work will be
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progression, as well as in response to treatment, and will assess their potential as new therapeutic targets. Activities: •Cell culture: isolation, expansion and maintenance of glioblastoma stem cells and
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develop a new generation of hybrid models combining large-scale machine learning with physical knowledge to represent interactions between mobile robots and their environment. The research will address
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for novel patient-tailored ablation protocols. As part of the thesis, the PhD candidate will spend 6 months at CaMo@KIT to actively take part in the generation of the synthetic signal dataset to be leveraged
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electrochemical characterization of new chromophores, promising molecules will be used as active materials in OSCs and OLEDs Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR6200-VERVER-027
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(MCU-PH). The PhD student will be co-supervised by Dr Julie Bernardor and Dr Stoyan Ivanov (immunologist, expert in myeloid cell biology), and will more broadly benefit from established collaborations
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experimental research. A high degree of independence will be required to design experiments, identify the most relevant parameters, improve existing setups, and propose new experimental configurations