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have profound applications and potential in protection of environment and high health standards. Our group is engaged in development of various sensors targeting biological pollutants, measurement
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, organic geochemistry and past environmental changes to work on developing the subsurface (mineral soil profiles) as geological archives for lipid biomarkers and soil organic matter composition. Your
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the fundamental understanding of electrical insulation, motivated by the need to develop novel engineering solutions. We work closely with leading manufacturers of power transmission and distribution equipment, and
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sustainable energy and chemical process systems. Our research spans from the molecular level to the scale of systems. We develop methods to advance sustainable energy and chemical process systems from
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impact: Become part of ETH Zurich, which not only supports your professional development, but also actively contributes to positive change in society. You can expect numerous benefits , such as public
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exploring the molecular mechanisms underpinning bacterial evolution and resistance. This fully-funded, full-time position combined with ETH's excellent working conditions, makes the role especially appealing
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presentation skills and excellent skills in technical/scientific writing. With the social and leadership competencies , ETH Zurich has developed a common understanding for a shared work culture. Kindly try to
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avenues for their exploitation in next-generation technologies. Job description The researcher will be responsible for developing unconventional computing based on the behaviour of arrays of nanomagnets
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. We will develop distributed and addressable robotic actuating materials that demostrate multifunctionality through the broad bandwidth of light. The Robotic Materials group headed by Prof. Hedan Bai
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excellence. Located in the heart of Europe, yet forging connections all over the world, we work together to develop solutions for the global challenges of today and tomorrow. Working, teaching and research