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-based self-healing, hybrid fiber architecture, Fe-SMA-based self-prestressing, and integrated structural health monitoring into one coherent system for thin, durable structural interventions. It can be
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structural interventions. It can be deployed through conventional casting for standard applications and through 3D printing for complex or non-planar geometries. In parallel, circular end-of-life strategies
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(written and oral). Our offer The project is planned for 3 years and will be carried out as a PhD thesis. It is supported by Empa under the supervision of Dr. Giacomo Reina. The candidate will perform
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for 3 years and will be carried out as a PhD thesis. It is supported by Empa under the supervision of Dr. Giacomo Reina. The candidate will perform research at Empa in St. Gallen with joint affilia-tion
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remain open until it is filled We live a culture of inclusion and respect. We welcome all people who are interested in innovative, sustainable and meaningful activities - that's what counts.
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for the submission of applications: 31 August 2026 though the position will remain open until it is filled We live a culture of inclusion and respect. We welcome all people who are interested in innovative