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sufficient demand. Mode of study Less than 50% online Programme duration 7 semesters Beginning Only for doctoral programmes: any time Application deadline For detailed information on the application procedure
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time before the dissertation is therefore shortened. The acquisition and application of computer science knowledge to research problems are facilitated when students enter the programme early
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semiconductor properties to the composition of lead-free double perovskites Your Profile: Master’s degree in theoretical or computational physics, chemistry, materials science, or a similar field Familiarity with
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. The programme has a modular structure according to the European Credit Transfer System (ECTS), as initiated by the Bologna Process. The workload of the doctoral candidates will be measured in credit points
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collaboration with Prof. Bryce Richards (IMT). The PhD will be registered in the Faculty of Chemical and Process Engineering. Contact Prof. Dr.-Ing. Andrea I. Schäfer, Institute for Advanced Membrane Technology
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engineering, process engineering, chemistry or a comparable discipline Knowledge of hydrogen and energy research is an advantage High motivation to complete the doctorate within three years Very good
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harsh process conditions Investigation of the underlying deactivation mechanisms Development of regeneration strategies for deactivated catalysts Coordination with internal and external project partners
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second stage of the admissions process. Tuition fees per semester in EUR None Combined Master's degree / PhD programme Yes Joint degree / double degree programme No Description/content Compelling for its
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. The project builds on recent advances in NPL synthesis using Cu-Zn-In-S as harmless material alternative to the toxic CdSe, and will be conducted in collaboration with the faculty of chemistry at TU
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and the Study of Religion Psychology and Educational Sciences Cultural Studies Languages and Literatures Social Sciences Mathematics, Informatics and Statistics Physics Chemistry and Pharmacy Biology