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or in-person; however, appointments are typically 12 months. For a list of potential host facilities, please visit https://orise.orau.gov/marine-energy-research-program/applicants/host-facilities.html
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analyses, as well as the development and optimization of 3D cell culture models to be applied in nutrigenomic research as physiologically relevant systems for mechanistic investigations. Previous experience
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opportunity to shape a sustainable future—developing innovative strategies, optimizing building performance, and partnering across campus to reduce energy use and costs. You’ll influence major projects
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in the setup, operation, and optimization of experimental facilities, ideally within HVAC or thermal energy systems. Proven expertise in system and component modelling, including CFD, 0D/1D simulations
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of “on-demand” emission capabilities, as well as relatively low efficiency and the need for external laser excitation, which prevents miniaturization and increases energy demand. Project target is to develop
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, as well as relatively low efficiency and the need for external laser excitation, which prevents miniaturization and increases energy demand. Project target is to develop hybrid SPS based on III-N/hBN
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or macrophagens). Training in cell signaling pathways, receptor biology, and immune cell function. Experience with molecular techniques such as Western blotting, ELISA, Flow cytometry, or similar methods
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materials prediction and synthesis workflow to find high-temperature superconductors since 2022 (SuperC ). Our CEO spent over 15 years in the chemicals and energy industry in executive roles and has
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.) Integration of Renewable Energy, AI-optimized management of variable renewable energy resources, smart inverter control and distributed energy resource coordination, energy storage optimization using machine
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21 Dec 2025 Job Information Organisation/Company Aalborg Universitet Department The Faculty of Engineering and Science, Department of Energy, Esbjerg Energy Section Research Field Engineering