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their website at https://www.naritalab.com/ Our laboratory investigates the biology of preneoplastic cell states, with particular interest in how changes in cell functional identity and plasticity are controlled
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constraints. The project will explore orchestrating reasoning models, vision-language models, world models and efficient control policies for reliable robot behaviour. A key focus is deciding when to deliberate
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gas, is the third most abundant greenhouse gas with 300-times greater global warming power than CO2 and it also contributes to the destruction of the ozone layer. Production of N2O is a by-product of
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-to-weight ratio and corrosion resistance. Their performance, however, is strongly influenced by microtexture, crystallographic orientation clusters that develop in the material during processing. Controlling
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evolution in Miscanthus hybrids, and to investigate how regulatory, epigenetic, and structural mechanisms contribute to the balance or dominance among subgenomes. Miscanthus is a notable bioenergy crop
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Engineering at the University of Sheffield. A leading centre for machine learning, robotics, and autonomous systems. The student will join a research group working at the interface of machine learning, control
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mechanisms, and distinguish cells that prevent productive infection from those that become infected but survive or delay killing. The post is based in Central Cambridge, UK. The successful applicant will
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! This unique research opportunity revolves around the physics of distributed robotic systems, mechanical metamaterials, active matter, and embodied intelligence, combining table-top experiments and
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defects and remain a leading cause of infant morbidity and mortality. Despite their clinical importance, the molecular mechanisms controlling development of the aortic arch arteries, which give rise
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defects and remain a leading cause of infant morbidity and mortality. Despite their clinical importance, the molecular mechanisms controlling development of the aortic arch arteries, which give rise