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permanent magnet. You will use our state-of-the-art open source micromagnetic model MagTense to perform this modeling work. You will research determining the ideal microstructure, for example grain size
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Knowledge of multi-omics integration and plant biology is an advantage Familiarity with large biological datasets and high-performance computing is desirable Ability to work independently and collaboratively
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: Applying robust bioinformatic and statistical methods to detect, authenticate, and analyse ancient pathogen DNA from large-scale ancient metagenomic shotgun sequencing datasets. Performing evolutionary
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services across multiple companies and authorities, thus supporting large virtual enterprises necessary for the development and operation of large-scale enterprises, such as critical infrastructures
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studies, including experimental planning, data acquisition in collaboration with imaging colleagues, quantitative analysis and integration with behavioural findings. Perform and develop molecular and tissue
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, and energy demand—to enable more efficient, flexible, and economically viable Power-to-X operation. This position is expected to start from 1st of November 2026 or as soon as possible hereafter. About
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electronic conversion, energy and hydrogen storage, downstream processes, and energy demand—to enable more efficient, flexible, and economically viable Power-to-X operation. This position is expected to start
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on transition metal catalysis applied to the conversion of specific plastic types to carbon capture materials. The position will focus on different catalytic processes and improving their performance
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well-known for its skilled and very innovative interdisciplinary research environments with high international impact. We perform world-class research, which contributes with solutions to solve essential
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tensors and local plastic strains (including operating slip systems) from Lab-4DµXRD data, in collaboration with the DTU Lab4DMade team and the Danish company Xnovo Technology ApS. Performing in situ Lab