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and inorganic powder-based materials for structural and functional applications. You will study and characterize the powder and formulation dependent granulation process to develop advanced ceramic
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on different topics related to wound healing. Project background Wound healing is a complex process in which a cascade of physiological events takes place to restore injured skin to its full functionality
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opportunities for the PhD candidate. Your profile We are looking for suitable candidates with a master level degree in material science, chemical engineering, physical chemistry or related fields with excellent
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materials for structural and functional applications. You will study and characterize the powder and formulation dependent granulation process to develop advanced ceramic powder feedstocks for the dry
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, chemistry, physics, chemical engineering, environmental engineering, or a related field. The ideal candidate should have a passion for sustainability and an interest in using innovative materials to address
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of polymers in a unified solution. This interdisciplinary project involves polymer chemistry and physics and is funded by the Swiss National Science Foundation (SNSF). It is also in collaboration with
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and passionate working in an interdisciplinary field and fulfill the following criteria: Completed Master's degree in biomedical engineering, physics or similar Have strong hands-on lab skills Have some
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science, chemistry, physics, chemical engineering, environmental engineering, or a related field. The ideal candidate should have a passion for sustainability and an interest in using innovative materials
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. Empa is a research institution of the ETH Domain. Empa's Laboratory of Biomimetic Membranes and Textiles pioneers in human manikin research and physics-based modeling at multiple scales. We bridge
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nanoscience, with a strong interest in surface and spin physics. Your tasks You will play a key role in conducting systematic research on the quantum coherent manipulation of spins on surfaces. Particular