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researcher, you will play a central role in this ambitious programme and act as a technological integrator across multiple research tracks. You will work closely with three PhD candidates focusing on different
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structure-preserving methods for mathematical models of physical systems, including topics such as geometric numerical integration, finite-volume and finite-element methods, variational formulations
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of the importance of open science and supports its scientists in integrating open science in their research practice. The Faculty of CEG comprises 28 research groups in the following seven departments: Materials
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deep learning that integrate physical constraints, symmetries and conservation laws. A central ambition is to connect these theories to concrete ACT projects and ESA use cases, such as autonomous
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-connected stages, meeting the dielectric criteria while delivering the dynamic control needed to shape the thermal profile. A down-scaled experimental prototype for design validation and integration with
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cultural exchange and integration. You don’t just join our faculty — you join a community where you can thrive, grow, and help shape the future of aerospace. Click here to go to the website of the Faculty
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a postdoctoral researcher, you will: Integrate hybrid traffic models and data assimilation methods into a coherent prediction framework. Develop uncertainty quantification methods and explainable and
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researcher to develop new methods for integrating circular and multi-material concepts into contemporary production. The project emphasizes analysis and design of multi-material systems including plastics and
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, mentoring programmes, and initiatives that promote cultural exchange and integration. You don’t just join our faculty — you join a community where you can thrive, grow, and help shape the future of aerospace
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path-flows, and other key parameters and inputs. In your role as a postdoctoral researcher, you will: Integrate hybrid traffic models and data assimilation methods into a coherent prediction framework