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on collective motion in chiral active matter and pattern formation in self-propelled particle systems with self-alignment and chemical reactions. The successful applicant is expected to have an excellent
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co-innovation and interdisciplinary approach. We will (i) work in living labs where innovations on minor crops will be developed across stages of the value chain; (ii) characterize the agroecological
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Max Planck Institute of Biophysics, Frankfurt am Main | Frankfurt am Main, Hessen | Germany | 17 days ago
-nucleic acid interactions (the candidate with prior experience in structure biology and protein expression and modification is preferred. Experience in programming is a plus. Your qualification It is
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, computational drug repurposing, and de novo design of novel protein-based therapeutics. Our work also includes developing gene editing strategies to correct or inactivate mutations associated with severe
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quite heavily. We establish new results concerning the analysis of stochastically driven anisotropic fluids, design novel numerical simulation and optimal control schemes, and provide new means for risk
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interpretation of OMICs datasets (DNA, RNA, proteome) Supervision and technical guidance of Bachelor’s, Master’s, and PhD students, as well as technical staff within the project context Participation in teaching
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. The project is embedded in the Collaborative Research Center “Cellular Plasticity in Malignant Myeloid Diseases – From Mechanisms to Therapy” and involves close interactions with academic and clinical partners
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co-innovation and interdisciplinary approach. We will (i) work in living labs where innovations on minor crops will be developed across stages of the value chain; (ii) characterize the agroecological
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to platform development for metabolic engineering What you bring to the table PhD in biotechnology, microbiology, molecular biology, or a related field Experience working with strict anaerobes, ideally with
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recover from disruptions, as well as the risk of cascading interactions between them. Key responsibilities: analysis of the planetary-scale resilience and stability of the Earth system (its capacity