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pave the way for science, creativity and development. Therefore, we welcome applications from people with diverse backgrounds and perspectives. Where to apply Website https://web103.reachmee.com/ext/I017
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following rehydration. How a differentiated cell can undergo such an extreme physiological transition while preserving genome integrity, cellular identity and the capacity to reactivate gene expression
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immunology, with the aim of developing improved cell-based immunotherapies for the treatment of cancer. Our research focuses on rationally harnessing and programming the immune system’s ability to perform
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intracellular bacterial pathogen Chlamydia trachomatis maintains its intracellular niche and modulates host cell biology. The employment is full-time for two years with access on 1 Nov, 2026 or by agreement
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is to develop next-generation GPU-based simulation methodologies in OpenFOAM for predicting thermal runaway initiation and propagation at the cell- and module level. Particular emphasis will be placed
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orchestration, while leveraging new technologies such as integrated sensing and communication (ISAC). These initiatives bring together leading academic, industrial, and public-sector partners to develop
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nutrition as well as food by-product biorefining and protein technology. The division has a wide range of modern analytical equipment for chromatography coupled with mass spectrometery, an in vitro human cell
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postdoctoral researcher in Complex Mobility Systems. The position is part of a Formas-funded project developing dynamic synthetic populations and mobility digital twins for resilient and equitable transport
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protein technology. The division has a wide range of modern analytical equipment for chromatography coupled with mass spectrometery, an in vitro human cell laboratory, and a microbiology laboratory. The
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system (CNS). We aim to uncover the principles of cell fate regulation during development and repurpose them for regeneration. We use a multidisciplinary approach that involves glial and stem cell biology