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combines structural biology (single-particle cryo-EM), protein engineering (including non-canonical amino acids), fluorescence spectroscopy (FRET, environment-sensitive dyes), and classical ligand binding
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for the last decade adopted a suite of cutting-edge biophysical techniques. We utilize a blend of structural biology (single particle cryo-EM), protein design (non-canonical amino acids), fluorescence
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chromatograph, FIA and electronic particle counters i.e., Coulter counters also available. As a PhD fellow, you will be associated with the research groups and get access to instrumentation of your main and co
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(RF) and microwave-based heating systems for magnetic confinement plasma devices, along with a solid theoretical understanding of wave propagation in plasmas. Hands-on experience with the development
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involving protein structure prediction by AlphaFold 3 combined with crosslinking/mass-spectrometry and single particle cryogenic electron microscopy on native or recombinant TZ complexes, you are expected
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employing an integrative approach involving protein structure prediction by AlphaFold 3 combined with crosslinking/mass-spectrometry and single particle cryogenic electron microscopy on native or recombinant
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Technologies with focus on application of photonics to geosciences with the aim for example to quantify rates of Earth-surface processes Magnetic Materials and Neutron Scattering with focus on magnetism in