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the relationship between the immune system and regeneration. This will require working with newts (Pleurodeles waltl). Specifically, you will be charged with developing newt knockout lines that enable
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–environment systems. A central component of the project is the development of next-generation process-based eco-epidemiological models that explicitly integrate environmental variability, ecological
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Automation , IEA, LTH, Lund University. We conduct cutting-edge research and education on how electrical energy systems can be developed for a sustainable future, not least regarding technology and systems
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and analytically, to solve problems independently using the right methods, and to develop an awareness of research ethics. In addition, you will have the opportunity to work on projects, to develop your
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short, you will be trained to think critically and analytically, to solve problems independently using the right methods, and to develop an awareness of research ethics. In addition, you will have the
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generation, and explainability Evaluation methodologies for knowledge-intensive AI systems The project will be driven by real-world domain applications in materials, casting, and manufacturing, developed in
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. The goal of this project is to advance gene regulatory network (GRN) inference from multi-omics data by developing novel AI techniques that exploit the knowledge of gene perturbations (experimental design
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are united in our efforts to understand, explain and improve our world and the human condition. Our division in the Enoch Thulin laboratory develops laser spectroscopic diagnostics techniques for industrial
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knowledge of cell and molecular biology techniques used to study cellular proliferation and invasion, including IHC, RT-qPCR, and Western blot. Experience in developing three-dimensional in vitro models and
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Biodiversity Subject description The subject concerns biodiversity in a wide sense; variation and evolution within species, between species and among communities across space and time. It includes the study of