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, to develop and interrogate biological design principles across eukaryotic systems. A central goal is to use yeast as a genetically tractable model system, followed by work in mammalian models, to establish
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postdoctoral researcher with a strong interest in human liver biology who is eager to work at the interface between advanced tissue engineering, stem cell biology, complex multicellular systems, and
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media formats. The role involves working collaboratively on storytelling approaches that integrate scientific research with community perspectives/knowledges and that explore different modes of public
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SMARTFIELD project. We are looking for a candidate with a solid background in social science, environmental management, sustainability science, agroecology, or a related field, who is motivated to work with
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to perform predefined clinical analyses. A central aspect of the work will be the design and implementation of software components for an LLM-supported data browser, including structured tool interfaces
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aspects of mitochondrial metabolism, import, and stress responses, and represent a new class of therapeutic targets. Building on our leadership in microprotein discovery and function, we are now expanding
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employees around the world work to discover and bring life-changing medicines to those who need them, improve the understanding and management of disease, and give back to our communities through philanthropy
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-generation AI models of gene regulation and disease progression. Our work is redefining Parkinson’s disease biology and enabling translational breakthroughs. The role Develop deep learning models across genome
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. The successful candidate will use biochemical, biophysical, and optical approaches, including advanced fluorescence microscopy (confocal, TIRF, single-molecule imaging), to dissect the molecular machinery
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A postdoctoral position is available for investigating the physical mechanisms of ultrafast magnetization dynamics in functional magnetic multilayers, including those used in next-generation