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essential contributions to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. The Bacteria and Materials Interactions Group at the Biointerfaces Laboratory
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. Empa is a research institution of the ETH Domain. The Bacteria and Materials Interactions Group at the Biointerfaces Laboratory is offering a PhD position focused on development of nanoengineered
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of nanoparticles for healthcare and industrial applications. As a PhD candidate, you will: Develop and refine SAXS and FCCS methods to quantify size, concentration, density and internal structure of diverse
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engineering applications. Empa's Centre for X-ray Analytics develops X-ray analytical and imaging methods for understanding materials structure in material, life- and medical sciences. This is a joint PhD
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-world energy applications, the project aims to better capture the dynamics of urban infrastructures across different spatial and temporal scales, from building-level energy demand to district-scale
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-world energy applications, the project aims to better capture the dynamics of urban infrastructures across different spatial and temporal scales, from building-level energy demand to district-scale
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in medical applications, this challenge is largely a materials challenge. Existing medical implants are dominated by rigid structures that often lack the adaptability and sophistication required
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fluency is not needed but considered a plus. You are a dynamic and curious person, highly motivated to work to face environmental challenges, in multidisciplinary and international collaborations. Our offer
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the following topics: plasma technology, surface science, water treatment, redox/radical chemistry. Proficient in spoken and writing English. German fluency is not needed but considered a plus. You are a dynamic
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continuum modeling (finite element modeling, computational fluid dynamics), and proven experience with COMSOL Multiphysics. Knowledge of heat and mass transport processes in heat-sensitive materials and