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to join the fight against PFAS – the so-called "forever chemicals" threatening our water sources. Sponsored by Anglian Water , this hands-on experimental project will explore advanced adsorption treatments
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the corona, for different accretion regimes and types of sources, to carry out specific studies for certain sources, and establish detection forecasts for future multi-messenger detectors. Highly magnetized
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alternative. This process operates under ambient conditions, utilises water as a hydrogen source, and is powered by renewable electricity. Recent advances in electrocatalyst design – enabled by operando
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additives) for non-aqueous aprotic sodium ion battery electrolytes with increased safety You determine the physicochemical (e.g., water content, viscosity, etc.) thermal (TGA, DSC) and safety related (SET
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are characterized by different biological source mechanisms than marine systems. The project will improve our understanding of the interactions between the biosphere and the atmosphere. In the long term, it
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work. A model is to be developed to estimate the material mass breakdown for various cell designs and cell formats. The model will be validated from teardown analysis of commercial lithium-ion battery
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technologies for quantum photonic networks? We are now strengthening our research team on quantum light sources in silicon and are opening three PhD positions within fabrication, characterization, and theory
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-ion batteries, rotating machinery, aircraft fuel system, APU, and electrical power generation system). A comprehensive test-bed for in-depth studies will be used for experiments for demonstration and
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semesters Beginning Winter semester Application deadline Please visit https://www.uni-muenster.de/Baccara/application/index.html . Tuition fees per semester in EUR None Combined Master's degree / PhD