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researcher to develop time-resolved imaging methods and apply them to semiconductor reliability problems. This is one of two postdoctoral positions opening in the group. This position focuses on time-resolved
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researcher to develop time-resolved imaging methods and apply them to semiconductor reliability problems. This is one of two postdoctoral positions opening in the group. This position focuses on time-resolved
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activity and the physical tumor microenvironment cooperate to drive brain cancer progression. The project Brain tumors do not grow in isolation. Glioma cells form functional connections with neural circuits
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training costs are exploding, largely due to energy and bandwidth inefficiencies in current electrical datacenters. Our group is developing a novel Optical Circuit Switched (OCS) architecture
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material supply-chains. Develop comprehensive digital assessment methods to evaluate whole-life material flows and their associated impact across sectors to inform policy and practice. Engineer whole-life
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the integration of CEP stabilization, XUV optics and active path-length stabilization Develop and validate methods for the complete temporal and polarization characterization of circularly polarized isolated
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responsiveness. The project will develop and validate individually calibrated behavioral tasks in immersive virtual reality (VR) to quantify effort-based motivation, vigor, persistence and goal-directed versus
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research environment Access to state-of-the-art core facilities (genomics, imaging, flow cytometry, bioinformatics, and more) Multidisciplinary training at the interface of cancer biology, functional
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, you will be encouraged to develop independent ideas, propose new concepts, and test them experimentally and/or computationally. The role is ideally suited to strengthen your pre-existing expertise and