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computational design tools to engineer novel membrane proteins, then validate these designs experimentally, with the goal of integrating them into functional devices at the biology–electronics interface. Research
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computational design tools to engineer novel membrane proteins, then validate these designs experimentally, with the goal of integrating them into functional devices at the biology–electronics interface. Research
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may facilitate eligibility for certain competitive funding opportunities. Relevant experience (e.g., molecular biology, cellular physiology, neuroscience, animal behavior, computational methods, etc
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, dynamics, and function of macromolecular complexes involved in health and disease. VIB combines excellence in fundamental research with exceptional opportunities for innovation and technology transfer
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nanopores. These methods will open the door to engineering sophisticated functionalities into synthetic membrane proteins - including selective transport, sensing, and signal transduction. Research
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nanopores. These methods will open the door to engineering sophisticated functionalities into synthetic membrane proteins - including selective transport, sensing, and signal transduction. Research
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fundamental research and real-world impact through industry partnerships, technology transfer, and the creation of innovative biotech ventures. Our discoveries contribute to new diagnostics, therapies
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About us VIB.AI, the VIB Center for AI & Computational Biology, is a research center dedicated to integrating machine learning with deep biological insight to understand complex biological systems
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Willingness to combine wet-lab experimental work and computational analysis Basic knowledge of statistics and/or programming (R, Python, or similar) Strong motivation to learn new techniques across
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Willingness to combine wet-lab experimental work and computational analysis Basic knowledge of statistics and/or programming (R, Python, or similar) Strong motivation to learn new techniques across