15 structures-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"Uppsala-University" positions at Free University of Berlin
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conjugates modulate the structural dynamics and function of lipid nanoparticles with the ultimate goal of enabling targeted drug delivery. A new analytical integrating advanced vibrational spectroscopy with
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future spin-based electronics. A focus is on spin and magnetization dynamics of ultrathin layers with unconventional spin structures and on the magnetism of adsorbed molecules. Experiments are carried out
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As a PhD student, you will become part of an excellent scientific network and benefit from our structured, interdisciplinary graduate program, which includes tailored training, workshops, retreats
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Bewerbungsende: 06.04.2026 The collaborative project ONEMUC – Respiratory Mucus as a One Health Interface investigates how the composition and structure of mucosal barriers (mucus) influence
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The collaborative project ONEMUC – Respiratory Mucus as a One Health Interface investigates how the composition and structure of mucosal barriers (mucus) influence the zoonotic transmission
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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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a doctoral candidate, you will become part of an excellent scientific international network and benefit from our structured, interdisciplinary graduate programme offers, which include training courses
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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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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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nanomanipulation setup to stack and twist 2D materials inside a cryostat, an optical "quantum twist microscope". Using this technique, you will study emergent structural chirality in 2D magnetic, excitonic, and spin