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thin films for emerging technologies. By combining state of the art physical vapor deposition, high throughput experimentation and data science, we develop thin films with enhanced performance and
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and their response to major climatic variations during and after the last ice age. The successful candidates will develop high-resolution palaeoecological records of aquatic invertebrate assemblage
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the last ice age. The successful candidates will develop high-resolution palaeoecological records of aquatic invertebrate assemblage change, particularly focusing on the remains of chironomid (non-biting
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. Empa is a research institution of the ETH Domain. Within our focus research Digital Health Solutions, we develop technologies for continuous long-term monitoring of individuals. At the Biomimetic
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exceptional candidates to apply for a PhD position in pioneering projects developing synthetic biology-inspired human therapies. The D-BSSE is the first truly interdisciplinary research department, uniting
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of Environmental Engineering, ETH Zürich and matriculate in ETH Zürich. The research is related to development of experimental and modeling techniques to identify emission sources, simulate the airborne transport
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teams from universities, research institutions, and museums in a highly collaborative network, supported by the Muoniverse Research School, which coordinates training, exchanges, and career development
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project aims to develop hydroborate-based all-solid-state batteries. A central objective is to achieve a deep, mechanistic understanding of the processes that govern electrochemical performance and cycling
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fabrication, and electrical engineering to develop bioelectronic interfaces enabling closed-loop programming of cellular behaviour and real-time monitoring of metabolic activity There will also be opportunities
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to study and predict. In this four-year SNF-funded project, you will develop data-driven, multiscale simulation methods that combine computer simulations, machine learning, and surrogate models to explore