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Description The International Research Training Group (IGK 2495) “Energy Conversion Systems: From Materials to Devices” at the Friedrich-Alexander-Universität Erlangen-Nürnberg offers 11 doctoral
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: The successful candidate will investigate ion transport through atomically thin membranes made of 2D polymers and graphene derivatives in close collaboration with experimental partner groups MPI Halle and Leiden
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accurate flood hazard and risk estimations for present and future cli-mates. The improved model chain consisting of a non-stationary weather generator, a rainfall-runoff model, coupled 1D-2D hydrodynamic
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allowances) as well as financial support for a pre-sessional German language course. Plus, material resources of 1,000 Euros per year, administered by the supervisor’s institute. Research stays outside
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research (and, where applicable, rent and family allowances) as well as financial support for a pre-sessional German language course. Plus, material resources of 1,000 Euros per year, administered by
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-sessional German language course. Plus, material resources of 1,000 Euros per year, administered by the supervisor’s institute. Research stays outside of Germany during the funding period may be supported
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Fraunhofer Institute for Microstructure of Materials and Systems, Halle, to carry out research into novel atomically engineered materials for nanosystems - tackling grand societal challenges in the fields
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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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Specifications. The PhD topic consists of two parts, the weighting of which can be adjusted. First, natural frequencies of different UAV categories for different power settings shall be modelled. Second, based
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frequencies of different UAV categories for different power settings shall be modelled. Second, based on mesoscale fluid dynamic simulations, microclimatic and turbulence modelling procedures in urban