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these nanocomposites, we are looking for a postdoc to further develop high performance computing numerical methods in our state-of-the-art open source micromagnetic model, MagTense. MagTense is based on a core
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–property–performance simulation platform, and (iii) a theoretical framework for design of AM-defect tolerant microstructures. The focus of the current postdoc position will be on applying all
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–microstructure–property–performance simulation platform, and (iii) a theoretical framework for design of AM-defect tolerant microstructures. The focus of the current postdoc position will be on applying all
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performance computing numerical methods in our state-of-the-art open source micromagnetic model, MagTense. MagTense is based on a core implemented in the Fortran programming language, and it relies
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-resolved micro and nano CT data. Develop and apply numerical implementations in simulation studies as well as to large experimental micro and nano CT data. Explore multi-modality reconstruction techniques
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using the EC-Earth earth system model, running simulations to test the robustness of Arctic-lower-latitude interactions in collaboration with colleagues at the Danish Meteorological Institute. Investigate
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using the EC-Earth earth system model, running simulations to test the robustness of Arctic-lower-latitude interactions in collaboration with colleagues at the Danish Meteorological Institute. Investigate
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must be in English. Please always include a copy of the original diploma/certificates. We only accept files in pdf-format no more than 10 MB per file. In case you have more than one file per field you
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include a copy of original diploma/certificates. We only accept files in pdf-format no more than 10 MB per file. In case you have more than one file per field you need to combine the pdf-files into a
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Applicants may choose a maximum of three publications for assessment Application and all appendices must be in Danish, English or one of the Scandinavian languages. Please always include a copy of original