92 high-performance-computing PhD positions at Technical University of Denmark in Denmark
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Job Description Are you passionate about brain-computer interfaces (BCIs), neurorehabilitation, and intelligent assistive technologies? The Department of Health Technology (DTU Health Tech
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—such as microtubes—while also performing embedded functions like weight and color detection. The project will combine multi-material 3D printing, sensor integration, and adaptive control, aiming to push
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when high-quality DNA or close reference genomes are unavailable. As part of a Novo Nordisk Foundation-funded project, you will design and implement computational pipelines, conduct comparative
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biocompatibility and a high surface area for bioelectrochemistry. Your main contribution in this project will be the design and microfabrication of the 3D carbon electrodes, exploring processes such as
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Computer Science section of DTU Engineering Technology and the Technical University of Munich (TUM). The project will investigate how technological, regulatory, and market uncertainties shape SMEs
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lead ASOs into the DTU-patented BioMATA biomaterial and perform characterization of formulation stability, release kinetics, and functionality over time. Participate in the development of a robust
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, CRISPR-based gene editing, and high-throughput analysis techniques in healthy and disease model systems. The main tasks include: Culturing of human iPSCs, embryonic stem cells and other mammalian cells
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with variable temperature operation (2-350 °C). Perform nanoscale measurements of buried currents and magnetization in solid-state batteries using scanning NV magnetometers. You will work in a team and
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Poul Due Jensen’s Foundation, Denmark. Responsibilities and qualifications Environmental factors like humidity and gases impact the performance of electronic devices by causing corrosion, which is
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laboratory experiments to analyze microplastic release and chemical leaching. Performing hazard and risk assessments based on experimental findings. Contributing to the development of an SSbD strategy in