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Field
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be to: conduct advanced research into supersonic combustion and compressible reacting flows, particularly investigating how compressibility suppresses fuel-air mixing contribute to research seeking
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flow battery stacks from prototype to commercial scale while ensuring performance and reliability. Develop, assemble, and validate stack designs through structured testing, durability studies, and
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-cell imaging and immunolabeling. These images will then be analyzed in 3D using automated methods. - Manipulate the physical constraints to which nuclei are subjected and compare transcriptional dynamics
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, sound mixing, motion graphics, captioning, compression and multi-platform delivery. • Use AI-enabled media tools for tasks such as transcription, captioning, noise removal, image enhancement
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development of a plasma-based injector for the synchrotron light source PETRA IV. In this context, we are searching for a highly-motivated scientist to develop an energy compression beamline for the future
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Fracture, Gleamer BoneView, Vertebral Compression Fractures. Policy Development AND Oversight: Work with the radiology team to develop and implement policies for AI use and imaging dashboards. Provide
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, and motion graphics for storyboarding, website, social and electronic communications in a high quality manner that is consistent with the university's image and brand. Assist in developing strategies
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. The University of Derby’s role focuses on AI model development for automated analysis of ultrasound data, including ultrasound image/video segmentation, vascular structure detection, vein compressibility analysis
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of metastatic lesions [1]. Recently, the development of CT scanners that use photon counting detectors (PCCT) is revolutionising the way CT imaging is done, thanks to their higher resolution and lower radiation
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strength [4]. Recently, the development of CT scanners that use photon counting detectors (PCCT) is revolutionising the way CT imaging is done, thanks to their higher resolution and lower radiation dose