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, storyboarding, studio and indoor photography, lighting/grip, audio engineering, video composition, and video/image compression for multiple delivery platforms. Comfortable working in a fast-paced, rapidly
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include experience using X-ray computed tomography and laboratory experience including chemical, x-ray, cryogen, compressed gasses safety and training records. Knowledge of image processing techniques and
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synthesis (images, text, audio, video), and complex reasoning. Investigate model compression, quantization, and distillation for efficient deployment. High-Performance AI Infrastructure (Infra): Design and
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optical communication networks and systems, as well as machine learning, computer vision and compressing digital videos. The Applied Machine Learning (AML) group is part of the Department for Artificial
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– Compressible Flow Lab V1 – Sound Power Measurement Lab V2 – Dynamic Balancing ME 431 Control Systems ME 452 Imaging Biomechanics ME 471 Introduction to Aerodynamics ME 491 Thermal Systems Design ME 497 Acoustics
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optical communication networks and systems, as well as machine learning, computer vision and compressing digital videos. The Applied Machine Learning (AML) group is part of the Department for Artificial
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of equipment and supplies, safe piloting of small boats in rough seas, safe conduct of diving activities using compressed air and life support equipment, and collection of data in the underwater environment
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cues from the tissue environment. For example, tumour tissues, can be significantly stiffer and experience higher 3D compression forces, thereby influencing signalling in both tumour and immune cells
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, compressed hours or another working arrangement. Please reach out to us to discuss what works best for you. It is anticipated that a hybrid working pattern can be adopted for this role, where the successful
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environmental conditions. Our lab is equipped with state-of-the-art facilities, including multimodal laser-induced shock waves, terahertz spectroscopy and imaging, high-resolution and high-speed digital image