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research questions. This postdoctoral scholarship offers the opportunity to be a part of this AI revolution by developing novel neural network architectures specifically optimized for plant genomic data. Our
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in electric vehicle applications. Scientifically, the following parts will be included in the research: a) Fabrication and optimization of large-scale hBN films of high quality with high in-plane
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, design and characterization of quantum processors Development and optimization of nano-fabrication processes for large-scale devices Development of optimal control techniches to achieve fast and high
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for tens of kilometers length. In this project, you as a postdoctoral researcher will mainly carry out: optimization of both fiber preform preparation and fiber drawing processes so as to reliably fabricate
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suggested start date is September 1, 2025, or as agreed upon. Work description CRISPR/Cas9-based gene editing of MSCs Optimization of MSC culture conditions Molecular and cellular characterization of modified
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finite-element simulation and topological optimization of light guidance in HCFs, and numerical simulation of thermo- and fluid dynamics under fiber-drawing processes. Apart from the main tasks above, the
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before the application deadline* Demonstrate strong mathematical skills, particularly in optimization and algorithm development Have a publication record in peer-reviewed journals (e.g., IEEE Transactions
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' resilience. Collaborate with interdisciplinary teams from academia and the aquaculture industry and contribute to large-scale lab and on-field fish experimental trials. Optimization and development
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. The work is performed in connection to two ongoing research projects “Probabilistic multiscale modelling of the macroscopic crack growth behavior in heterogeneous materials” and “Optimized Digitalization
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deposition of uniform, highly efficient and stable materials. Specifically, you will get optimized process recipes from our partners and investigate formation processes in-situ by means of multimodal XAS-XRD