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100%, Zurich, fixed-term The Digital Building Technologies group (DBT) at the Institute of Technology in Architecture (ITA), Department of Architecture (D-ARCH), is looking for a Ph.D. student in
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. Project background The Computational Mechanics of Building Materials (CMBM) aims to understand and predict mechanical failure in materials and structures. By combining numerical modeling tools with
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magnetoresistance and polaronic transport. This project aims to develop novel computational frameworks to understand and predict the structure of such materials. Job description You will develop computational methods
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Frameworks (COFs) with magnetic structures for targeted drug delivery, ensure biodegradability and precise magnetic control, and perform comprehensive in vitro and ex vivo studies to assess drug encapsulation
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student who conducts research in the Swiss National Science Foundation National Research Program 81 funded project “Beyond Replacement Construction: Implementing the Socio-Ecological Transformation
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synthetic routes to organic molecules, transition metal complexes and functionalized carbon nanomaterials. Gain insight into the electronic structures, magnetic/thermochemical properties of newly synthesized
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on the feasibility and mechanical behavior Project background This PhD thesis is part of the FASTE (Fabrication Additive des Structures performantes multi-maTériaux pour utilisation en Environnement sévère) project