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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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islet physiology and single-cell genomics to join the lab of Dr. Joan Camuñas. The lab of Dr. Joan Camuñas stands at the interface of genomics, biophysics and precision medicine. Our mission is to develop
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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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societal development by providing top quality education that is tightly linked to its internationally recognized research programs. Research at the Department of Molecular Biosciences, The Wenner-Gren
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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