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cardiovascular digital twin is a physics-based computer simulation that models an individual's health and disease states to aid decision-making. These high-fidelity models are often computationally expensive
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physical elements, operated and controlled via management systems and procedures. These management systems and procedures are becoming increasingly automated. Moreover, critical infrastructures become
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computer science, mathematics, physics, or a related discipline. Demonstrate eagerness to tackle complex mathematical challenges. Have proficiency in both written and spoken English. Knowledge of machine
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the Process & Energy Department of the Faculty of Mechanical, Materials, and Maritime Engineering (3ME). The effort will be highly integrated, framed within the TU Delft Climate Action Program, and in
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economic growth and prosperity. The infrastructure of ports, including breakwaters, access channels, turning circles, harbor basins, terminals, quay walls, equipment, and physical environmental aspects like
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economic growth and prosperity. The infrastructure of ports, including breakwaters, access channels, turning circles, harbor basins, terminals, quay walls, equipment, and physical environmental aspects like
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knowledge of FRP composite mechanics. Experience with mechanical/physical characterisation and manufacturing of FRP composite materials. Excellent spoken and written English. A creative and curious mindset
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propulsion concepts to support smart green shipping in the upgrade of existing ships and building of new vessels. The PhD research will analyse the basic physics of tacking ships and seek for innovative
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Mathematics, Physics, or a closely related field. Because of project definitions, we are looking for EU citizens. Doing a PhD at TU Delft requires English proficiency at a certain level to ensure
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(virtualised) physical infrastructure How to model the impact of AI (closed loop learning) on the potential “action spaces” of the different software components and the resulting potential network behaviour