27 structural-engineering "https:" "https:" "https:" "https:" "https:" "https:" "Multiple" "https:" positions at Free University of Berlin
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Further information about the Farm Animal Clinic – Division for Poultry you can find here: https://www.vetmed.fu-berlin.de/en/einrichtungen/kliniken/we18/gefluegel/index.html Job description: As
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for behavioural monitoring and stress assessment • Work in an interdisciplinary, collaborative environment with access to advanced infrastructure • Receive structured training in infection biology, animal models
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More information about the Institute of Immunology you can find here: https://www.vetmed.fu-berlin.de/en/einrichtungen/zfi/we06/index.html Job description: As members of the German Research
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equipment to create, layer, structure, contact, cut and fold two-dimensional materials such as graphene and boron nitride with atomic precision. You will work closely with scientists from the CRC 1772 and the
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groups from physics, chemistry, and engineering collaborate to exploit materials' chirality (the difference between a material and its mirror image) to store, manipulate, and transport quantum and
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The advertised project BUG-ID is an international training network focusing on the overarching goal to develop advanced graphene-based biosensors, combining nanomaterials and engineered biomolecular
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infrared spectroscopy. Job description: The PhD student will help to establish this method, prepare recombinant Aβ peptides and variants, and perform structural measurements on oligomeric states inaccessible
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We work in the field of the chemistry and geochemistry of radioactive elements, with a particular focus on the actinides. We aim to understand their behavior in both natural and engineered
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of proteins and their complexes. Together with our collaboration partners, we relate these thermodynamic and structural properties to biologically relevant functions, such as inflammation control in sepsis
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of excitons – interlayer hybrid excitons -- in the molecule/2D heterostructures. The objectives will be: • Fabricate hybrid structures and integrate them with field-effect transistor geometry • Prove