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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | about 2 months ago
Fellow.pdf Position Overview The key role is to perform original cutting-edge research in the field of experimental quantum nanophotonics with optical metasurfaces. The project work will involve both
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The candidate will be expected to work on a project in collaboration with Schaeffler to conduct research on “collision monitoring and control system of cobot based on fiber optic sensing and deep
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/Computer Vision. The experience in diffusion models is a plus. Have a PhD degree in computer science/engineering or related disciplines. Knowledge of autonomous vehicles or cyber security will be
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at the atomic scale. The postdoctoral researcher will lead the theory component of a research program, developing microscopic models of impurity-host coupling and identifying optical signatures of correlated and
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science, psychology, or human factors Strong stakeholder engagement and communication skills Proven experience in data collection, analysis, and academic writing A keen eye for detail and a proactive
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and experimental systems to make energised artificial lipid bilayer membranes compatible with high resolution optical microscopy for the study of single molecular motors. The post is funded by
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thermoreflectance optical pump-probe thermal-property measurement methods, develop and refine instrumentation, optimize protocols, and provide thermal property data for thin-film and multilayer materials that can
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for tissue engineering and birth defects. We study the developing zebrafish heart, which allows advanced optical, genetic, and biophysical manipulation. Using a systems biology approach, we integrate tissue
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data (sequences and associated properties), adapting existing generative architectures (e.g. VAEs and diffusion-based models when appropriate) to the peptide domain, and defining suitable representations
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FGFs and other lightning-generated high-energy radiation, then using radio and optical predictions from this model to compare against ALOFT observations to ultimately solve the FGF puzzle while