29 structures-"https:"-"https:"-"https:" Postdoctoral research jobs at Aalborg University
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understanding of the physical processes of the wave structure interaction. The postdoc position aims at developing a state-of-the-art methodology for accurate testing of such structures in our physical wave basin
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Environment and Energy Efficient buildings, Wind Turbines, Structural Design, Structural Materials, Geotechnical Engineering, Wave Energy to Traffic along with many other areas. The research is conducted in a
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of employment The employment is in accordance with the Ministerial Order on the Appointment of Academic Staff at Universities (the Appointment Order) and the Ministerial Order on Job Structure for Academic Staff
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mission is to meet the future's demands for new materials and production systems by directing the whole value chain from basic material understanding to materials' applications in mechanical construction
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of employment The employment is in accordance with the Ministerial Order on the Appointment of Academic Staff at Universities (the Appointment Order) and the Ministerial Order on Job Structure for Academic Staff
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the Ministerial Order on the Appointment of Academic Staff at Universities (the Appointment Order) and the Ministerial Order on Job Structure for Academic Staff at Universities (in Danish) and protocol on certain
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directing the whole value chain from basic material understanding to materials' applications in mechanical construction, industrial production, and management. The department has several strong, international
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the Ministerial Order on the Appointment of Academic Staff at Universities (the Appointment Order) and the Ministerial Order on Job Structure for Academic Staff at Universities (in Danish) and protocol on certain
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carried out at University of Copenhagen and then transition to Aalborg. In collaboration with the candidate, we will decide how this will be structured practically. You will be part of our calcium
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. The goal is to quantify both the extent of material degradation and its precise spatial distribution within the battery structure. By modeling the battery as a dynamic 3D acoustic landscape, we expect to be