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. The Laboratory of High Performance Ceramics is offering a PhD position focused on the development of new catalytic materials for CO2 conversion. This project will center on high-entropy oxides, a promising class
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evolving techniques opening up new fields of applications. Our aim is to leverage on quantum cascade laser (QCL) based DCS and develop a spectrometer with unprecedented spectral resolution, sensitivity, and
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and explant cultures or microphysiological placenta-embryo chip) Identification of molecular developmental toxicity mechanisms of UFPs and MNPs Development of original research ideas within
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, Matlab, C++) for developing new simulation frameworks or image processing algorithms Experience in or willingness to learn independently operating additive manufacturing systems (DED and LPBF), including
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energy production. In this PhD project, you will explore the fundamental mechanisms that will enable the development of more sustainable thermosets containing dynamic crosslinks in the future. We are a
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process conditions. Explore, adapt, refine, and validate analytical methodologies for FTIR, GC, and OES. Develop and propose original research ideas within the project’s framework. Interact closely with
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. Pioneered investigations on particle bio-functionalization, particles uptake, accumulation, translocation across biological barriers and their bioresponses. Your tasks Design and prepare light-activated
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. Empa is a research institution of the ETH Domain. Our Structural Engineering Research Laboratory develops new materials, systems, and manufacturing technics for civil infrastructure use. It is one
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beam-material interactions Good programming skills (e.g. Python, Matlab, C++) for developing new simulation frameworks or image processing algorithms Experience in or willingness to learn independently
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. Empa is a research institution of the ETH Domain. The nanotech@surfaces Laboratory is a multidisciplinary team of physicists and chemists, dedicated to developing and characterizing novel functional