22 density-functional-theory-molecular-dynamics PhD positions at University of Twente
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of Twente, we believe in making healthcare decisions that truly reflect the needs and values of patients. For that purpose, we are participating in a large international project dedicated to revolutionizing
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PhD position on Closed-loop testing for faster and better EM evaluation of complex high-tech systems
that you help us to solve that problem! The objectives are to develop a world-wide accepted new standard for testing large systems in RC, by comparing the newest fast EM sensor systems, comparing performance
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for infrastructure and building owners and contractors - who will be jointly planning clusters renovation processes in larger urban spaces. As part of your project, you also address planning data exchange, which mean
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for digitally transforming renovation processes, you will design governance structures to guide the implementation and upscaling of PRE-MADONA's envisaged digital ecosystem. As part of your project, you will
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to the renovation flow. You will be part of a team comprising three PhD researchers who are dedicated to the PRE-MADONA project. Together, you work in a multidisciplinary project with through leaders in the domain
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becomes a real challenge to uniquely extract information on their layer properties in order to understand and improve their performance. A way to “break the nanometric barrier” for structure analysis is to
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PhD researcher you will work within a multidisciplinary project which unites expertise from various fields, aiming to improve the quality of life for people in need of organ replacement. It is therefore
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Key takeaways The University of Twente (UT) is located in the east of the Netherlands. It offers a dynamic campus, excellent facilities and the possibility to work in- and with- famous research
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operating (Waterstromen) membrane-based wastewater treatment plants. As part of the UT team, you will develop a robust model predictive control (MPC) algorithm based on sensor and other system inputs that can
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approach is to apply foundational techniques grounded in logic, semantics, and verification. This work takes place within the CYCLIC project: Cyclic Structures in Programs and Proofs, a collaboration among