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the complete chain from materials properties to process design and evaluation. More information on the project can be found here: This specific project (DC7) addresses membrane adsorbers, which have small
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process by means of adapted diagnostic methods. The particular difficulty in adapting these methods for suspension plasma spraying lies in the high local and temporal resolution required, the separation
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networks using the numerical simulations Calculating the likelihood of material parameters correctly describing experimental results Correlating material parameters with process conditions of sample
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) in chemistry, materials science, geoscience, physics or related field Experience in laboratory work, e.g. synthesis and/or physicochemical characterization such as IR, CHN, PXRD High motivation
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in physics, physical chemistry, chemical engineering, or related field Knowledge and competences in physical theory and modelling Experience and interest in computer programming Basic knowledge
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) for scientific and large-scale datasets Implement parallel ML training on the High Performance Computers, including JUPITER, Europe`s first exascale computer Prepare, process and publish datasets and benchmarks
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visit to France. Your tasks will mainly include the: Use of state-of-the-art synthesis processes for the production of graphene oxide-based active materials Optimization of the process to achieve
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of an innovative shim insert necessitates a blend of robust engineering skills and advanced simulation methodologies spanning various physical domains. To meet this challenge, ZEA-1 and INM-4 will integrate
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reaction phenomena in nanoporous electrocatalytic materials Collaboration with partner groups in a German–Canadian research project Your Profile: M.Sc. degree in physics, physical chemistry, chemical
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the: Use of state-of-the-art, industrially established (continuous) synthesis for the production of Na-based cathode active materials Optimization of the process to achieve the highest possible yield and