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A funded PhD position at SDU Physics - Interdisciplinary research within experimental soft matter...
project in experimental soft matter and biological physics in the area of active liquid crystals, funded by Novo Nordisk Foundation. Project background The PhD project fits within the scope of the project
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, composition of the human body, biological properties, and the influence of environmental factors on humans. Molecular genetic studies include analyses of receptor genes and genetic polymorphisms in variable
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Max Planck Institute for Multidisciplinary Sciences | Gottingen, Niedersachsen | Germany | about 9 hours ago
Movellan, I. Mey, D. Riedel, C. Steinem, S. Becker, L. B. Andreas, C. Griesinger Sci. Adv. 7(20) eabg2174 DOI: 10.1126/sciadv.abg2174 (2021) Lipid-induced polymorphism of α-synuclein fibrils, B. Frieg, L
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | about 5 hours ago
) Lipid-induced polymorphism of α-synuclein fibrils, B. Frieg, L. Antonschmidt, C. Dienemann, J.A. Geraets, D. Matthes, B. de Groot, S. Becker, L.B. Andreas, C. Griesinger, G.F. Schröder.Nat. 13, 6810 (2022
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electroactive bacteria, interface modification. A significant focus of the project will be on Electrochemical Quartz Crystal Microbalance studies, to follow interface development and correlate interfacial
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immunofluorescence, as well as the analyses of datasets within the HUNTER SDE. The Research Associate will have the opportunity to apply bioinformatic analyses to these datasets (e.g. single nucleotide polymorphisms
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interested in (de novo) protein design? Are you fascinated by ice-binding proteins and ice crystal growth? Are you passionate about research? Do you want to work in a multidisciplinary team? Information Ice
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characterisation of: Electrical properties (ionic and electronic conductivity) Crystal structure and chemical composition Equality, Diversity, and Inclusion Equality, Diversity, and Inclusion is at the heart of the
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of the research will be as follows: To develop new growth methods for high light yield perovskite scintillators To study morphology and crystalline quality of perovskite crystals using Surrey’s new single crystal X
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to their density, low entanglement, and ability to rapidly self-assemble into highly ordered nanostructures to form a lamellar arrangement, resulting in colored materials (bio-based photonic crystals). From