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conducted with different composite material parameters (thickness, lay-up, and types of fibre and matrix) in order to develop optimised FML composites with high durability and fatigue life. The expected
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stiffness by changing their composition and self-assembly process. The relationship between nanoparticle structure and stiffness will be determined both through experimental and modelling approaches. Finally
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, to undertake your own innovative research in and across the field. Eligibility You need to meet the entry requirements for QUT's Doctor of Philosophy , including any English language requirements. You must
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for a QUT Doctor of Philosophy , including any English language requirements not have previously completed a PhD be able to commence the program in the year of the offer enrol as a full-time PhD student
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The aims of the research are to develop efficient and accurate computational and experimental methodologies for characterising hybrid, multifunctional 3D printed fibre-polymer composites and explore
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In addition to the Industry PhD Program Scholarship of $34,000 pa (GST exempt, indexed annually at 3%), there is an industry top-up component valued at $12,000 pa (not indexed). As such, the successful candidate will receive a stipend of $46,000 pa. In addition to the Industry PhD Program...
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are highly toxic and can only be reliably tested at >1ppm levels. To overcome this limitation, new sensing materials such as 2D materials and their heterostructures will be investigated to enable ppb level
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Materials from Spent Lithium-Ion Batteries”. The PhD research projects are important part of an ARC Linkage Project which aims to develop scalable processing techniques for the regeneration of cathode
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-temperature performance. The PhD project will focus on the development, investigations and optimizations of new electrode and electrolyte materials. The project will expand the student’s skill set in scientific research
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The scholarship provides a minimum stipend of $34,481 each year for three years to perform experimental investigations and developing mathematical models to valorize waste and produce carbon nano