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Innovation: Identify and implement improvements in LES sub-grid scale models or actuator disk/line representations to better capture turbine-atmosphere interactions. Scientific Impact: Lead the authoring
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Innovation: Identify and implement improvements in LES sub-grid scale models or actuator disk/line representations to better capture turbine-atmosphere interactions. Scientific Impact: Lead the authoring
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together three scientific disciplines. Combined, they reinforce each other and are the driving force behind the technology we all use in our daily lives. Technology such as the electricity grid, which our
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we all use in our daily lives. Technology such as the electricity grid, which our faculty is helping to make completely sustainable and future-proof. At the same time, we are developing the chips and
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Micro seminar series Opens external , and an internal seminar Opens external , where faculty and PhD candidates have the opportunity to present and receive feedback on their research. Additional
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for the integration of renewables and the electrification of energy consumption. Through digitalisation, power networks become Smart Grids that can monitor energy flows and adjust energy supply and demand accordingly
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such as the electricity grid, which our faculty is helping to make completely sustainable and future-proof. At the same time, we are developing the chips and sensors of the future, whilst also setting
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. Where to apply Website https://www.academictransfer.com/en/jobs/358128/postdoc-vacancy-terahertz-micro… Requirements Additional Information Website for additional job details https
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the contract. A strong background in computational or numerical modelling, preferably with demonstrated experience in one or more of the following: micromagnetic modelling, inverse problems, or nano- to micro