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structures, domain walls, and topological defects govern macroscopic functionality. In this project, we will employ cutting-edge synchrotron-based 3D imaging techniques to directly visualize ferroic order at
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like tufting, machine-based embroidery techniques or non-interlaced 3D pre-forming. Development of advanced imaging and characterization technologies (X-ray micro tomography, EPR imaging and spectroscopy
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“Invasion Biology, Spectroscopy, Chemical Ecology” 80-100% (f/m/d) You will join the FORSAID initiative which is seeking to establish a novel and comprehensive paradigm for identifying, observing and
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like tufting, machine-based embroidery techniques or non-interlaced 3D pre-forming. Development of advanced imaging and characterization technologies (X-ray micro tomography, EPR imaging and spectroscopy
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approaches, we aim to provide the first comprehensive picture of Hsp90's structure–dynamics–function relationship, with broad implications for understanding cellular health and disease. As a PhD student on
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Krios microscopes, all hosted and maintained at ETH Zurich’s imaging facility, ScopeM. Appropriate computational resources are also readily available. In addition, we have access to the biophysical
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Krios microscopes, all hosted and maintained at ETH Zurich’s imaging facility, ScopeM. Appropriate computational resources are also readily available. In addition, we have access to the biophysical
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Astrophysics and is attracting attention worldwide – finding life in a distant world. Also, LIFE is being developed at the time of paradigm changes in the space sector and the global economy – a time when it is
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concepts, helping researchers prototype, evaluate, and transition promising ideas toward implementation. Working across both hubs, this position bridges mission formulation and execution, ensuring technical
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of financial support for year 4. completed form concerning ethical issues and research requiring authorization or notification; template document provided. signed NOMIS code of conduct; template