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: Very good performance in your Master`s degree in the fields of energy technology, mechanical engineering, materials science, civil engineering, industrial engineering, physics, resource management
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electrolytes. In the targeted temperature range, these are often more susceptible to reduction phenomena (cf. cerium dioxide with zirconium dioxide), which therefore play a greater role as degradation mechanisms
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building models Your Profile: Master studies in the field of of mechanical engineering, industrial engineering, process engineering, informatics and mathematics or similar Good knowledge of a programming
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of the Modelica building models Your Profile: Master studies in the field of of mechanical engineering, industrial engineering, process engineering, informatics and mathematics or similar Good knowledge of a
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and efficiency Your Profile: Very good academic record and currently enrolled in a Master’s program in engineering (energy technology, mechanical engineering, industrial engineering) or a related field
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Process Engineering, Chemical Engineering, Mechanical Engineering or a similar discipline Strong interest in pursuing research on electrochemical systems Experience in one (or more) of the following areas
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collaboration with leading international research partners within the EU project Your Profile: Masters degree or comparable degree in mechanical engineering, electrical engineering, environmental engineering
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Steinrück), we investigate mechanisms and processes of chemical hydrogen storage using advanced methods (including large-scale research facilities) as well as modern data reduction and data evaluation methods
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automation experts to develop and use a reliable, fast, electrochemical testing process Your Profile: Excellent master degree in process, electrical, chemical, or mechanical engineering or a related discipline
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pressure and flow rate. Set up detail-level simulation models of flow channels and holders with flexible soft materials. Study mechanical stress and impact on displacement, compression and damage effects