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, Quaternary Science, Palaeoecology, or a related field. Experience in palaeolimnology, palaeoecology, limnology, microfossil analysis and/or sediment work would be an advantage. Candidates should hold a valid
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characterization is highly appreciated. We are looking for committed and creative individuals able to work in a team. The candidate will work in a top-level research environment with state-of-the-art laboratory
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how perishable biological products react inside cold chain unit operations and to pinpoint why some products decay faster. For that purpose, we develop digital twins of the cargo, based on measured air
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. Demonstrated aptitude for scientific creativity and non-conventional thinking. Fluent in written and oral English. Self-motivated, critical-thinking, open-minded and communicative, with a strong interest to work
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. Empa is a research institution of the ETH Domain. The Laboratory of High Performance Ceramics is offering a PhD position focused on the development of new catalytic materials for CO2 conversion
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. Empa is a research institution of the ETH Domain. Your tasks Your tasks will focus on the design and operation of experiments to investigate the failure mechanisms in wooden structures. This will require
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candidate will engage in cutting-edge research in applied environmental microbiology. The research will focus on Microbial Ecology in the Anaerobic Digestion process. The candidate will work as part of
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components like self-labeling protein tags for application in cell biology. The work is highly interdisciplinary and collaborative, involving synthetic chemistry and/or protein engineering as well as cell
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. Empa is a research institution of the ETH Domain. Applications are invited for a PhD position in the Air Quality and Particle Technology group (Prof. Dr. J. Wang). The successful candidate will work in
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seeking for PhD candidates. We work on the epitaxial deposition of functional oxide thin films using pulsed laser deposition. We use in-situ diagnostic tools during the growth process to advance the design