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integrated THz technologies for THz time-domain spectroscopy and imaging. The project will unite novel nanowire THz technology from Oxford with unique custom-designed integrated circuits from project partners
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paradigm shift in our fundamental understanding of the charge-lattice interactions that govern such effects. This PDRA role will utilize several state-of-the-art spectroscopic techniques, such as transient
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management of group research computing infrastructures. About You You should be educated to degree level (preferably in biomedical/image analysis/medical research or an allied field) or have equivalent
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cancer biology, molecular biology, medicine, or neuroscience. Your expertise will include molecular biology techniques, advanced microscopy, quantitative image analysis, and primary tissue culture, all
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an interdisciplinary team working to build this new paradigm of environmentally-friendly and functional living materials, which can be used in diverse application domains. The project team includes leaders in
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will employ methods such as electrophysiology, biological imaging, histology, laser vibrometry and behavioural assays to study the gustatory system in bees and vibration sensing in a variety of insects
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exciting recent technological advances, having its impact on fields as diverse as medical imaging, conversational agents, astronomy, and many more. The Oxford Applied and Theoretical Machine Learning (OATML
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projects that use animals as part of their original research into the function and dysfunction of brain circuits. The MRC Unit Programmes and projects employ innovative electrophysiological, imaging
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of cancer immunology, and familiarity with image analysis software. Applications for this vacancy should be made online and you will need to upload a supporting statement and CV. Your supporting statement
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analysis (content analysis of text, visual analysis of images), and survey design/analysis. It is expected the successful candidate will work up a total of 111 hours which will be variable and mutually