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mitochondrial DNA (mtDNA), overcoming one of the major challenges in modern genome engineering. To achieve this, we are developing programmable lipid-based synthetic cells that are capable of transporting genetic
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Systems via Proof Certificates, and focus on the design, development, and application of Safe RL algorithms as well as their verification via Proof Certificates, including monitoring and shielding of cyber
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aligned with the aims of the Terascale project. Develop and apply suitable methodologies for research for AI for science and catalyst discovery. Design, implement, and evaluate novel models, algorithms
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state-of-the-art facility supporting the Target Malaria programme, an international not-for-profit research consortium developing innovative genetic technologies to help reduce malaria transmission
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genetic strategies to help reduce the disease burden. The post holder will help produce independent and original research as part of a large team of postdocs and technicians within the group based
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transformative analytical technologies. This role combines computational and experimental aspects. You will design and implement advanced computational algorithms for reconstructing peptide sequences directly from
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of mitochondria, the energy-producing compartments inside our cells. Mitochondria carry their own small genome, and reliably installing new, synthetic genetic material inside them has long been one of the great
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multidisciplinary clinical diabetes research team integrating population-based research, advanced data science, genetics and clinical studies to understand heterogeneity in metabolic health and treatment response
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of mitochondria, the energy-producing compartments inside our cells. Mitochondria carry their own small genome, and reliably installing new, synthetic genetic material inside them has long been one of the great