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PhD Scholarship in Integrated Photonics for Telecommunication, Biosensing and Precision Measurements
propagation Interfacing to array microfluidics Image analysis of biosensor response Sensor surface biofunctionalisation Optical communications High-speed signal analysis Modelling of optical propagation in
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problems and data types and modality, from large-scale unstructured data, to highly varied sensor data and multimodal data. ADM+S students will participate in a national ARC Centre-based research and
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to incorporate diamond quantum sensors into other materials like glasses and polymers to add sensing functionality to optical fibres and polymer-based bioscaffolds.The project involves the processing and
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: Programming: Proficiency in languages such as Python, Java, C++, and scripting languages. Network Security: Understanding of network protocols, firewall configurations, intrusion detection systems, and network
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of Excellence, the successful applicant will also be part of dynamic, national network of collaborating universities and industry partners, offering ample opportunities for national / international collaborations
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systems for studying the response of mechano-sensitive cells inside blood vessel under customised physiological and pathological conditions. The microfluidic system consists of a network of semi-circular
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The project aims to discover and optimise opportunities for net positive impact in workwear value chains, such as enhanced efficiencies, waste reduction, cost reduction, productivity increase, and
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see the world with once-in-a-lifetime experiences, including a 6 to 12 months residential stay in Australia form part of a rich multidisciplinary network of researchers and supervisors coming together
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techniques that exploit quantum sensors based on spin defects in solids. Firstly, the student will be involved in the experimental realisation of these quantum microscopes, learning or applying knowledge and
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construction wastes in an unstructured environment. The gripper has to adapt to wastes with different shape and size and tolerate collisions due to material moving during the picking. The touch and force sensors