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analysis of structural degradation in laminated composite architectures. Their primary focus lies in the formulation of high-fidelity numerical frameworks, incorporating advanced finite element methodologies
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, efficiency, and degradation under dynamic operating conditions and your work will contribute to the development of new knowledge within this field. Your work tasks In this position you will conduct research
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the project The position is affiliated with the Pioneer Center for Accelerating P2X Materials Discovery (CAPeX) and the section for Applied Power Electronic Systems. You will join an interdisciplinary
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. Design and execute operando experiments to probe structural dynamics and degradation during repeated switching. Analyze large scattering and diffraction datasets and connect structural signatures
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from 1st of November 2026 or as soon as possible hereafter. About the project The position is affiliated with the Pioneer Center for Accelerating P2X Materials Discovery (CAPeX) and the section
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particles with pos-sible biochar-degrading/modifying microorganisms and the functional and genetic activity of the microorgan-isms. The selected candidate will take on several duties, including collecting
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engagement to accelerate the sector's transition to circularity. Aarhus University is lead beneficiary for two work packages dedicated to consumer engagement and behavioural activation. Together, these work
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existing on-chip photonic device platforms in collaboration with project partners. Design and execute operando experiments to probe structural dynamics and degradation during repeated switching. Analyze
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. The research project The Novo Nordisk Foundation-funded PlantTip project – running from 2025 to 2028 - aims to identify societal tipping points that can accelerate Denmark's transition to more sustainable
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Shamelessness: How Elite Rhetoric Fuels Hostility and Tolerance for Political Violence”, funded by the Carlsberg Foundation (Semper Ardens: Accelerate) and headed by Associate Professor Tobias Widmann