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, selectively forgetting, and adapting their behavior through experience, all while retaining commercial-grade mechanical properties. In this PhD project, you will synthesize and characterize semi-crystalline
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work will involve: Design and synthesis of injectable hydrogel systems Encapsulation and controlled delivery of probiotics and bacteriophages Engineering and characterization of phage-based antimicrobial
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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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. Empa is a research institution of the ETH Domain. Research project on Design, synthesis, and multiscale characterization of materials for soft robotics applications (SAM3/ESR12 – soft robotics
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characterization of materials for soft robotics applications (SAM3/ESR12 – soft robotics) This project takes place within the Marie Curie Doctoral Network on Soft Active Matter Microrobots for Medicine (SAM3
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synthesis and characterization. Familiarity with cell culture and in vitro assays. Experience in catalysis, programming and large data analysis is a plus. Excellent communication skills and fluency in English
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into an interdisciplinary challenge Completed Master’s degree in biomaterials, chemistry, nanotechnology, or biomedical engineering. Experience in nanomaterial synthesis and characterization. Familiarity with cell culture
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of this PhD project is to investigate lithium- and sodium-based solid-state batteries using muon-based bulk and interface characterization techniques. The main objective is to gain a mechanistic understanding
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tasks You will be based at Empa to characterize the physio-chemical properties of plastic particles and will use ice nucleation instruments at ETH Zurich to simulate cloud ice formation processes. Prepare