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for in-situ characterisation of species in solution and precipitation indicators - Electrochemical studies to better understand the effect of magnetic fields on precipitation processes - Research into new
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entanglement. - Theoretical and Analytical Studies: Conduct theoretical and numerical analyses of superradiant molecular ensemble models, with thorough documentation of processes and results. - Simulation Code
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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 recruited researcher will study the interaction of a
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ultrafast imaging, compatible with the observation of living biological systems, while remaining applicable to the study of nanostructures and functional materials. The recruited researcher will contribute
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will be responsible for: - Conducting a literature review on nickel-based anode nanomaterials for the oxidation of oxygenated organic compounds. (Literature review report due in the first quarter
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expertise in macrophage/stroma interactions. Applicants must hold a PhD (or be close to completion: thesis submitted at the time of application) in immunology, stem cell biology, or stromal cell biology
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. The aim will be to look at how these issues are perceived by different stakeholders and different audiences. Main activities: - Implementing surveys on the subject matter - Presentation and discussion
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property corresponding to equilibrium currents in response to an applied magnetic field, provides a unique probe for studying both macroscopic and microscopic systems. This project aims to exploit recently
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liquid phases. The main objectives of the study will be the design of catalysts and the understanding of their catalytic properties. A rigorous investigation of reaction kinetics and mechanisms will be
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criteria The applicant must hold a PhD in molecular chemistry (organic chemistry or organometallic chemistry). Experience in catalysis and mechanistic studies will be appreciated. Website for additional job