43 solar-physics-"https:"-"https:"-"https:"-"https:"-"https:"-"OSU" PhD positions in Denmark
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The Department of Electronic Systems at The Technical Faculty of IT and Design invites applications for a PhD stipend in the field of wireless-native Physical AI Systems within the general study
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modelling. This is a 4-year researcher position starting at 1 January 2027 or as soon as possible thereafter. Job description The researcher will conduct research in physical oceanography within the Horizon
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project description Applications are invited for a three-year PhD position in Physical AI at Aarhus University's Department of Electrical and Computer Engineering. The candidate will join the Adaptive
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Description The Department of Electronic Systems at The Technical Faculty of IT and Design invites applications for a PhD stipend in the field of wireless-native Physical AI Systems within the general study
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pumping technologies for future electrified energy systems. We are currently recruiting a PhD candidate at DTU for a project on the multi-physics modelling of bearingless pumps. A parallel PhD position is
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Your day-to-day research will move between theory, modelling and real systems. You will build mathematical and physics-based models of complex thermal systems. You will develop reduced order
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information may be obtained from Assistant Professor Bjarke S. Jessen ([email protected] ) and Professor Thomas Willum Hansen ([email protected] ). You can read more about DTU Physics and DTU NanoLab at https
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. If you need assistance with uploading your application or have questions regarding the recruitment process, please contact Aarhus BSS HR & PhD at [email protected]. Place of work Department of Management
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Aalborg University, Department of Energy, Campus Esbjerg, invites applications for a three-year PhD Stipend from October 1st or soon hereafter in dynamic modelling, simulation and optimization
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multi-fidelity modelling, your research will advance and integrate three core elements: (i) physics-based multi-fidelity structural models enabling high-resolution analysis at fatigue-prone hot-spots