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Application dates Applications close1 October 2026 What you'll receive You'll receive a stipend of $40,000 per annum for a maximum duration of 3.5 years while undertaking a QUT PhD. The duration includes an extension of up to six months if approved for your candidature. This is the full-time,...
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PhD Scholarship This project will develop the next generation of intelligent robotic systems capable of autonomously manipulating small, soft and deformable objects in confined environments
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explore how geometry, wettability, and fluid properties can be harnessed to achieve passive and energy-efficient liquid manipulation. The candidate will combine experiments and theoretical analysis
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applications such as aerosol delivery, spray dynamics, and particulate manipulation in confined devices. This project will target scientific machine learning strategies such as through autoencoders and neural
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biology, molecular biology and animal models to investigate how these hybrid cells favour carcinogenesis. Where to apply Website https://app.smartsheet.au/b/form/019eedeef91978fdbc2b67718479eac6?project_id
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current value of $37,145AUD per annum 2026 full-time rate (tax-free stipend), indexed plus allowances as per RTP stipend scholarship conditions at: https://www.monash.edu/graduate-research/future-students
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My research explores ways to determine the atomic architecture of materials so we can understand and manipulate a material’s behaviour. At the atomic level, amazing and beautiful quantum phenomena
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of $37,145AUD per annum 2026 full-time rate (tax-free stipend), indexed plus allowances as per RTP stipend scholarship conditions at: https://www.monash.edu/graduate-research/future-students/scholarships
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of functional materials for energy conversion and inspires how to manipulate thermal properties toward better performance. The computation-driven results will be verified experimentally in QUT’s laboratories and
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applications such as fuel cells and fluid manipulation in microfluidic devices. Due to its strong relevance to reducing carbon emission and energy transition, and the presence of rich physical mechanisms at pore