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Optimizing a 3D microfluidic IVD model to study cell responses to wear particles, refining culture conditions, and analysing cytotoxic and inflammatory mechanisms. Optimizing a 3D microfluidic IVD
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mechanisms involved in the leaching of copper concentrate by glycine solutions. • Optimize process parameters such as temperature, pH, glycine concentration, and particle size to maximize copper
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(ITTC) for Optimal Ageing. The Centre is led by Monash University (Turner Institute, Monash Engineering, Monash Faculty of IT) and Federation University. The Centre seeks to inspire and train the next
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for this scholarship you must: have a first-class Honours or H1 or equivalent degree in a relevant discipline of engineering/science be an Australian citizen, New Zealand Citizen or an Australian permanent resident
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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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and Industry collaborator Kurloo Technology, with the student primarily based at Curtin University (Perth, Western Australia). The objective of this project is to develop and test new methods
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criteria: The successful candidate should hold a bachelor's and master's degree related to one of the following areas: Industrial Engineering / Manufacturing Engineering relevant to Operations and Supply
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Transformation Training Centre for Optimal Ageing and Monash University The Monash School of Psychological Sciences is ranked among the best in the world. Our School’s mission is to develop students and research
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related to one of the following areas: Industrial Engineering / Manufacturing Engineering relevant to Operations and Supply Chain Management. Candidates with a bachelor's and master's degree in Operations
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inorganic AEMWEs by integrating the perovskite electrolyte with perovskite electrodes from cell fabrication to cell configuration optimization and to single cell performance. Significance The project has