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, experimental, and modelling datasets related to physical oceanography, bentho-pelagic coupling, and carbon export. • Investigate the mechanisms controlling carbon export from surface waters to the deep ocean
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Strong experimental skills in molecular and cellular biology Solid publication record, including first-author publications in relevant peer-reviewed journals Ability to independently drive research
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motivated by combining rigorous modelling with direct industrial impact in the green transition. You have: A PhD in chemical engineering, process engineering, mechanical engineering, data science, computer
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foundation to realize your ambition to transform the built environment, this is your opportunity. At Department of Civil and Mechanical Engineering (DTU Construct ), you will break new ground at the absolute
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, contributing to both research and education in a field of central importance for the built environment. Your work tasks The position targets classical structural engineering, with a strong emphasis on mechanics
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using quantitative -omics-based approaches to identify molecular changes driving cardiometabolic disease. About Us Our research group investigates the molecular mechanisms underlying cardiac pathology
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scientific advice of the highest quality within building design and processes, building construction and safety, building energy and installation, solid mechanics, fluid mechanics, materials technology
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thereafter. Project overview The goal of this project is to advance the understanding of failure mechanisms in optical phase change materials used in photonic devices, using synchrotron X rays and X ray free
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these critical areas. Modern cardiometabolic research spans fundamental studies of disease mechanisms as well as prevention and treatment. It integrates more effective lifestyle interventions with emerging
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One or more Postdocs in Reliability Assessment and Optimization of Advanced Power Electronic Modules
of embedded wide-bandgap devices; investigation of degradation mechanisms and damage accumulation in high-power-density module structures, including the challenges related to parameter monitoring, heat