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to the damage tolerance design of structures. Cyclic loading causes adverse effects and leads to accumulated damage and degradation of residual strength in composite laminates. Predicting the residual strength
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Research scholarship funded by RMIT School of Computing Technologies. The scholarship is for 3 years; there would be a fee waiver and the standard stipend. Research scholarship funded by RMIT School of Computing Technologies. The scholarship is for 3 years; there would be a fee waiver and the...
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PhD Scholarship in the Centre for Advanced Defence Structures and Materials Experimentation (CADSME)
structures and/or materials experimentation. The project would suit students with a background/interest in advanced structures and/or materials experimentation.
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to building structure-activity relationships (SARs) based around targeted modifications of their patented gold-based drug candidate using innovative in vitro protocols to refine lead drug candidate(s). This
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for construction waste grasping, and further design flexible and adaptable robotic grippers for waste handling. The existing commercial robotic hand and grippers might not be able to handle irregular and heavy
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relationship between nanoparticle structure and stiffness will be determined both through experimental and modelling approaches. Finally, interaction of nanoparticles with various mammalian cells will be studied
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of the complex non-Newtonian fluids present in this system. This Project addresses a significant scientific knowledge gap in the understanding of the rheology and thermal behaviour bulk plastic melt-flows
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technological solutions for the recycling of waste heat in specific food industry settings, using computational fluid dynamics modelling, lab experiments and field work To disseminate finding in high impact
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interactions. Machine learning: reinforcement learning, or multi-agent systems. Signal processing: spectrum sensing, localization, or radio environment modelling. Multi-agent systems: distributed intelligence
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overcoming the limitations of existing nanomaterials—such as poor nanochannel structure, low chemical stability, and high internal resistance—this project introduces an innovative platform for efficient ion