15 model-driven-development "Integreat Norwegian Centre for Knowledge driven Machine Learning" PhD positions at Empa
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, prestress transfer, and reactivation. Structural-scale simulation of SURPASS overlays in strengthened members, including parametric finite element analyses for surrogate-model development and digital-twin
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element analyses for surrogate-model development and digital-twin support. Large-scale experimental assessment of volumetrically prestressed SURPASS overlays for non-planar structures, including
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, and interdependent pathways) using time-resolved and spatially resolved spectroscopy, patterned illumination, and pH/thermal stimuli. Develop and validate logic maps for memory formation, consolidation
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interpret experimental and physiological data and contribute to the development of models and predictive approaches for human thermal responses. Communicate scientific results through peer-reviewed
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therapy. The successful candidate will join an interdisciplinary research team developing innovative living hydrogel systems for the treatment of wound infections caused by antimicrobial-resistant (AMR
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. Empa is a research institution of the ETH Domain. At Empa's Laboratory for Biointerfaces and Center for X-ray Analytics , we develop and characterize advanced nanosystems for biomedical applications
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. The laboratory conducts, develops and optimizes processes for renewable fuels. The group “Hydrogen Spectroscopy” is further involved in hydrogen science & technology such as power-to-gas, membrane science and
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systems developed in the SAM3 project in terms of process-structure-mechanical property-function relationships. The candidate will be enrolled as PhD student at the Doctoral School for Materials Science and
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for soft robotics applications under various boundary conditions (variable strain rate, relative humidity, etc.). 3) Multiscale characterization of materials and systems developed in the SAM3 project in
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, imaging or diagnosis. This PhD project will develop stimuli-responsive nanozyme coatings for personalized medical implants. Nanozymes are nanomaterials capable of mimicking the catalytic activity of natural