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on the InP-on-Si platform. The work will be done primarily on 4-inch wafers to take advantage of the 4-inch InP process line in the TU/e nanolab cleanroom. But the technology developed will be scalable to much
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embedded within the Laboratory of Physical Chemistry at the Department of Chemical Engineering and Chemistry and will be supervised by dr. Heiner Friedrich and prof. Rolf van Benthem . Research
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stringent latency constraints. Besides making use of well-known diversity techniques at the physical layer such as channel coding and multiple antennas, the project will investigate diversity techniques
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photolithographic process. That’s why a lithographic equipment is kept on its own ecosystem – in a cleanroom and isolated from the hustle and bustle of the outside world. The semiconductor industry largely relies
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vacation pay of 8%. High-quality training programs and other support to grow into a self-aware, autonomous scientific researcher. At TU/e we challenge you to take charge of your own learning process . An
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be changed over time. Accordingly, the computation resources may need to be rescheduled to fulfill dynamic needs for processing sensory data. This process of reconfiguration must be efficient, real
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, making intelligent systems more pervasive and sustainable. Job requirements Applicants must have or expect to receive a Master of Science degree or equivalent in Electrical Engineering, Applied Physics
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adaptation, and synthetic data generation. 2. Domain Knowledge-Augmented Representation Learning: Development of techniques for incorporating clinical domain knowledge with physics-informed neural networks
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of bio-basedcomposite material systems. Integrate sustainability considerations seamlessly into the structural design process to optimizebuilding performance and minimize environmental impact. The
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, chemical technology, or physical chemistry, with expertise in electrochemistry. Practical skills are essential, alongside the ability to work collaboratively in a team and a keenness to learn new techniques