50 model-driven-engineering-"Data-driven-Materials-Modeling" PhD positions at Monash University
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and vision models, supporting emerging capabilities including EEG-to-text decoding and AI-driven neurotechnology applications. This position has a two-stage selection process: Stage 1: Please submit
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PhD Scholarship in Adaptive Soft-Mist Inhaler Technology Job No.: 697546 Location: Clayton campus (Laboratory for Turbulence Research in Aerospace and Combustion (LTRAC)) Employment type: Full-time
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PhD scholarship opportunity in Materials Science and Engineering: NOₓ production by plasma bubble reactor Job No.: 697669 Faculty/Portfolio: Faculty of Engineering Location: CSIRO Clayton, Victoria
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Australian adults experience these financial support systems. These insights will be utilised to co-design a navigation support model that can assist individuals in accessing and engaging with these systems
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Doctor of Philosophy (PhD) or Master of Engineering Science (Research) International Scholarship Opportunities at Faculty of Engineering Job No.: 673887 Location: Clayton campus Employment Type
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Doctor of Philosophy (PhD) or Master of Engineering Science (Research) Domestic Scholarship Opportunities at Faculty of Engineering Location: Clayton campus Employment Type: Full-time Graduate
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for infrastructure platforms in minerals-to-green metals transformation. It will suit a candidate interested in combining experimental materials science, advanced characterisation, and data-driven modelling to develop
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Bachelor's degree with Honours (First Class or equivalent) or a Master's degree in a relevant discipline. • A strong academic record in fields such as chemical engineering, materials science, chemistry
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social media and online platforms. The project will use natural language processing (NLP), large language models (LLMs), and network analysis to identify coordinated harassment, anti-gender equality
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prestigious Group of Eight, Monash is a powerhouse of research innovation. Its Department of Materials Science and Engineering ranks second nationally, driving breakthroughs in advanced materials, polymer