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single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic eruption. In other words: there is plenty of room at the faculty for ground-breaking research. We educate innovative
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AI. Meanwhile we are pushing the limits of applied mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic
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description of cell wall strains and stresses and turgor pressures with sets of ordinary differential equations describing the biochemical networks regulating cellular decision making. Models will be initiated
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | 30 days ago
hypermutation in drug discovery. The project involves a wide range of techniques, with a focus on molecular and synthetic biology, complemented by analytical techniques from cell biology and chemistry. The
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, cell biology, and tissue engineering. The project builds upon the complementary expertise of LAAS-CNRS and the RESTORE research center. LAAS-CNRS will provide expertise in microfabrication, microfluidic
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Department of Biology hosts internationally leading research activity in ecology, evolutionary biology, physiology, marine science and technology, and cell & molecular biology. As a PhD Candidate with us, you
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This PhD project, part of the REACT MSCA Doctoral Network, aims to develop an energy-efficient compute-in-memory (CIM) architecture using gain-cell memory for real-time edge learning, addressing
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their cells in response to different environmental stimuli and stresses [1]. These changes in cellular calcium concentration trigger many downstream responses, including re-programming of gene expression
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, Cell & Developmental Biology 📊 Biological Physics & Quantitative Biology 🛠️ Bioengineering & Biomaterials If you hold a Master’s (or equivalent) in life sciences, natural sciences, computer science
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combines computational and experimental approaches to design biosensor candidates and transform them into fully functional biosensors in bacterial cells. Additionally, we will apply the newly developed