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surfaces using surface chemistry and interfacial analysis techniques. Contribute to the optimization of flotation process parameters based on experimental results. Work closely with a multidisciplinary team
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smectite, sepiolite, and layered double hydroxide. -Summarize the MD data to find the optimal mineralogy properties need to maximize the binding efficiencies of the minerals for the toxins. -Summarize
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characterisation techniques; You will identify and implement optimal methods for the integration and testing of materials in real-life conditions; You will perform structure-property correlations and unravel
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and mRNA translation. The successful candidate will establish live imaging tools to analyse translation dynamics in regenerating axons, using an ex vivo culture model previously optimized (Schaeffer et
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-driven catalytic systems and/or electrochemical analysis (e.g., GC-FID, cyclic voltammetry, electrochemical workstation) Strong experimental design skills, including optimization of material synthesis
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skills and experience in written, spoken, and collaborative work in English. What we offer: A career path optimized for transition to industry. You will be affiliated with the dynamic Aalto Scientific
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are looking for a curious and driven postdoctoral researcher to join a project focused on improving how we study and optimize medical treatments. The work centers on advancing a vessel-on-a-chip platform—a
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• Design, execute, and interpret experiments to investigate molecular mechanisms of circadian nutritional compensation in fungal and mammalian systems. • Develop and optimize experimental protocols in
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to deliver industry-relevant tools that enable optimal design and operation of hydrogen technologies in real-world application. The successful candidate will work at the intersection of multi-disciplinary
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the date of hiring. 4. Work plan: 4.1. The main tasks to be performed under the grant will be: a) Optimization of pharmacodynamic assays for in vitro and in vivo testing. b) Conducting pharmacodynamic