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-driven simulation with physics-inspired data and image analysis, often in close collaboration with experimental partners, to identify physical principles behind biological dynamics and self-organization
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chemical analysis of secondary plant substances and their reaction products using HPLC-MS and GC-MS identification of novel reaction products cell biological studies (e.g. cytotoxicity studies) analyzing and
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, and optoelectronic properties of nanoribbons prepared from 2D materials, mainly graphene and transition metal dichalcogenides. Our teams are part of a larger collaboration, focusing on various aspects
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. Engage in data analysis and collaborate with computational scientists. Your qualifications: MSc or equivalent degree in Molecular Biology, Genetics, Biochemistry, Epigenetics, or a related discipline
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to frogs as it is in humans (Zoller et al., 2023). Using epignetic clock analysis, you will characterize cellular ageing and senescence in developing frog tissues using immunofluorescence microscopy. You
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% of the full-time weekly hours Tasks: Advancing relativistic ab initio methods for predicting structural and spectroscopic properties of heavy-element
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for donor-spin-qubits. Your tasks Isotope enrichment of silicon 28 using ion beams Operating focused ion beam and scanning electron microscopes Fabrication and Optimisation of liquid metal ion sources Perform
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, biomedical engineering, neuroscience, physics, or related field • Strong interest in vision science and technical aptitude • Solid analytical abilities with experience in image analysis and/or human
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projects range from the analysis of basic cellular processes to clinical translation, from the application of novel biophysical approaches and the generation of mathematical models to the development of new
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cultivation experiments under controlled conditions chemical analysis of plant secondary metabolites using HPLC-MS and GC-MS protein isolation and characterization using LC-MS plant physiological measurements