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collaborator, Kurloo, based in Brisbane, Australia and be involved in the commercialisation pathway for the research outcomes. Useful Information CSIRO industry PhD project description 8558.pdf Scholarships
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Current reseach is in the areas of: Development of biomimetic structures as ultrasound contrast agents Deep tissue imaging using photoacoustic contrast agents All optical photoacoustic sensors
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Futures Institute are seeking motivated and qualified candidates for up to 15 fully-funded PhD scholarship. The preferred candidate should have strong programming and data science abilities, with
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PhD Scholarship - Movement Metrics for Physical Health Job No.: 682825 Location: Clayton Campus Employment Type: Full-time Duration: 3.5-year fixed-term appointment Remuneration: The successful
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PhD Scholarship in Integrated Photonics for Telecommunication, Biosensing and Precision Measurements
PhD projects in the area of biosensing, communication and precision measurements. Detailed PhD project descriptions that can be found on our webpage (InPAC). To pursue these projects, we are looking
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What you'll receive You'll receive a stipend scholarship of $33,637 per annum for a maximum duration of 3.5 years while undertaking a QUT PhD (1.75 years for MPhil). The duration includes
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PhD Scholarship – Feasibility, Acceptability and Utility of a Person-Centred Behaviour Change Program to Slow Cognitive Decline in Older Adults Job No.: 677725 Location: Clayton campus Employment
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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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or the University of Queensland). Stipend: The scholarship will be for 3.5 years (PhD projects) and has a stipend of $36,161 per annum (indexed annually) plus a $10,000 top-up scholarship per annum. It is likely to
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catheter probe based magnetic sensors for biological applications. To perform quantum sensing, we optically read-out the NV centre's electron spin state to quantify the perturbing effect of nearby