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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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focus lies on nucleic-acid delivery for next-generation therapeutics. This PhD project aims to develop lipid-based nanoparticles for the controlled co-delivery of multiple genetic cargos to cancer cells
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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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strong back-ground in nonlinear finite element modeling, structural mechanics, and concrete structures. Experience or interest in 3D concrete printing is also important. Additional skills, including
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bridge soffits. Your profile The candidate should have a Master's degree in Structural Engineering (or related engineering) with a strong back-ground in nonlinear finite element modeling, structural
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date and not having a doctoral degree. We are seeking talented and enthusiastic students to perform a PhD, with a solid background in mechanics of materials and simulations. Experience with material
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solid background in mechanics of materials and simulations. Experience with material characterization using electron microscopy, nanoindentation, or other methods, and light-based 3D printing is an
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Materials science and technology are our passion. With our cutting-edge research, Empa's around 1,100 employees make essential contributions to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. We offer an opportunity to join an exciting...