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Field
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. The post is funded by the EPSRC’s Centre to Centre (C2C) Grant, “Mobile Robotic Inspector: Learning to Explore and Manipulate in the Real World” and is fixed-term of 24 months duration. The project will
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is English. We are seeking excellent candidates at post-doctoral level to participate in new research endeavours, related to robot learning, manipulation, and AI for autonomous physical systems
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learning, and AI-driven manipulation. This position offers the opportunity to work on real-world robotic systems and develop novel algorithms at the intersection of robot learning, control, and AI
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functional imaging. Applicants should have a Ph.D. and/or M.D. and be creative and highly motivated. A strong background in mouse neural circuit manipulations and electrophysiology is desirable. For more
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extensive knowledge and experience in DNA damage response field, cancer biology, or mechanobiology. Possess technical expertise in advanced molecular biology techniques such as CRISPR, RNAi, DNA manipulation
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oscillators driven by the storage-ring RF signals to fulfill the function of manipulating X-ray pulses. More specific responsibilities include MEMS design and simulation, testing and characterization
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. Employ advanced neuroscience techniques, which may include: o Fiber photometry for real-time neural activity monitoring. o Chemogenetics for circuit manipulation. o EEG/EMG recording and sleep-state
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. This project explores the emerging risk landscape posed by the deployment of autonomous LLMs that can execute tasks, manipulate system settings, and interface with web services—moving beyond mere text generation
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Investigate how dynamic stimuli manipulate catalyst electronic properties, and how these stimuli can manipulate catalytic elementary steps and reaction outcomes Perform detailed in situ / operando studies
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also in the development of microfluidic devices dedicated to droplet manipulation (production, fusion, sorting, or combination of several of these steps). This expertise will be attested to by