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radiolabeled compounds. Work in a interdisciplinary environment Collaborate closely with a PhD student in the Locher laboratory to design and optimize glycosylated peptide and nanobody constructs. Present
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We offer you Thrive in an inspiring, international research environment with cutting-edge infrastructure, where your work will directly impact the future of quantum technologies. Get involved in all
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research and collaboration. Our offer We provide an international and stimulating research environment with excellent infrastructure for personal and professional development. You will be employed full-time
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heat stress and improve thermal safety, comfort, and performance in challenging environments. Your tasks Your task will be Develop, adapt, and validate experimental and computational methods
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environmental control and analytical instrumentation. A supportive and inclusive workspace: We are committed to creating a respectful, inclusive, and constructive working environment. Flexible working
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(Python, MATLAB, or similar) Motivation to combine computational modeling with experimental validation in a highly collaborative environment We offer A unique environment combining theory, computation, and
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groups respond to environmental change and the concept is increasingly recognized as a key driver of ecosystem resilience. Understanding and promoting response diversity is therefore essential
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a total of six years, depending on age and qualification. We offer the opportunity to pursue a high-quality PhD at renowned institutions in a dynamic and collaborative research environment. ETH Zurich
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candidate will work in a collaborative and interdisciplinary research environment and will have opportunities to develop expertise in developmental research methods, educational research, longitudinal designs
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the discovery and design of structural alloys through defect engineering, with a particular focus on materials for extreme environments, including fusion energy and space applications. Our research combines