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to work on an innovative research project exploring the neurocognitive principles underlying working memory and its interaction with episodic long-term memory. The core responsibilities involve designing
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for an interdisciplinary “bridge-builder” who strives for Scientific Excellence and Real-World Purpose. ● Background: HCI (Human-Computer Interaction), Computer Science, Ethnography, Sociology, or a related
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to systematically map drug and genetic interactions of bacterial immunity in microbial isolates using high-throughput genetics (Brenzinger et al, 2024, Nature Microbiology ). The ideal candidate will do wet-lab work
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interactions). Demonstrated competence with key experimental techniques (e.g. flow cytometry, primary immune cell isolation/culture, molecular biology methods); experience with in vivo infection models and/or
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apply in vitro chromatin reconstitution systems that enable mechanistic experiments on a genome-wide scale to dissect functions and interactions of ATP-dependent chromatin remodelling enzymes. We
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investigates how cells control their metabolism on a large scale. With a focus on yeast, we use functional genomics and develop advanced mass spectrometry to study how genes and metabolic pathways interact. Our
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interaction with leading experts in neuroscience, vascular biology, computational biology, and translational research. Opportunities to co-supervise students are provided. The position offers a strong
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. • documentation of all relevant aspects of the survey in a database. • analysis of the arthropod datasets1, focusing in particular on the interactive effects between climate and land use, in collaboration with
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candidate will also be part of the Institute for Ethics and History of Medicine and will have the opportunity to interact with other members of the institute. Application Interested candidates should submit