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. Your job: You will design, build and experimentally investigate a water-based electric propulsion system. Your work will focus on propellant management, plasma generation and system performance under
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to thicknesses below 5 µm, even a single excess pulse can cause irreversible damage. This thesis addresses this challenge by developing a real-time, in-line endpoint detection system. The plasma generated by each
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range of suspension-based processing methods, such as screen printing, plasma spraying, dip coating, and electrophoretic deposition Developing sintering processes for coated support structures under
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various methods to different types of contaminated coatings. Treatments may include: wet chemical processing and corrosive acid etchants, oxygen/ozone exposure, plasma treatment, or polymer film application
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: electrolysis, plasma, and direct reduction The role of multi-scale modelling in metallurgical processes and materials sustainability Characterisation techniques for materials: from atomistics to the meso-scale
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plasma physics (XGC, IPPL). Expected qualifications: A Master's degree in Computer Science or Applied Mathematics. Necessary knowledge: Modern C++, GPU computing with CUDA/SYCL, MPI, Krylov solvers
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PhD position | Sustainable Energy Materials | Electrochemistry 30.06.2023, Academic staff We test novel catalysts for sustainable energy conversion processes such as polymer electrolyte fuel cells