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Field
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-of-the-art computational methods to investigate the genetic mechanisms underlying neurodevelopment and neurological disorders by integrating single-cell genomic and multi-omic datasets. You will work as part
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emissions of networks through the use of carbon-aware network telemetry, and the implementation of new hardware support mechanisms. Your role will include the design, implementation and evaluation
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conduct advanced research in pharmaceutical sciences and translational cancer biology, focusing on tumor microenvironment signaling, perineural invasion, and therapeutic resistance mechanisms in prostate
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neurodevelopmental disorders. The successful candidate will develop and apply experimental and computational approaches to understand gene regulation and disease mechanisms in neural development and to evaluate
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conditions. The successful candidate will join a multidisciplinary research program that combines experimental models, patient-derived materials, and advanced technologies to explore the mechanisms that lead
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and Rolls-Royce plc. This is a multi-physics problem spanning multi-phase fluid dynamics, heat transfer, solid mechanics and materials. The tools will be applied to real turbomachinery components and
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Computer Science, Robotics, Systems Engineering, Electrical and Computer Engineering, Mechanical Engineering, Chemical Engineering, Materials Science & Engineering, Chemistry, or a related quantitative scientific
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imaging, high-content, single-cell resolution) to assay compound activity Develop imaging assays capable of distinguishing mechanism of action (e.g. growth inhibition, biofilm/attachment disruption
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cancer scientists, clinicians and mathematicians will explore the mechanisms of evolved adaptive response to therapeutic selective pressures in colorectal cancer. You will develop and apply advanced
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cancer. The research will focus on elucidating the molecular and cellular mechanisms that drive neuroblastoma metastasis and resistance to immunotherapy, with the goal of identifying novel therapeutic