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an ARC Linkage Project focused on developing an autonomous system for detecting and quantifying structural damage in infrastructures (e.g., bridges, grain silos) using computer vision, digital twins, and
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Current reseach is in the areas of: Development of biomimetic structures as ultrasound contrast agents Deep tissue imaging using photoacoustic contrast agents All optical photoacoustic sensors
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the controls on the migration, accumulation and preservation of hydrogen in geological reservoirs. PhD Project 3: Structural and geomechanical characterisation of natural hydrogen systems This project will
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Learn more about our history, campuses and facilities, leadership team, organisational structure, and governance and policies. Faculties and schools Explore our faculties and schools and the real-world
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will align with and contribute to the Laureate Fellowship programme of research through a focus on possible future working lives in 2030 and 2050 in the construction/building industry. The wider agenda
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PhD Scholarship – Structural Aspects of Digestion Job No.: 679367 Location: Parkville campus Employment Type: Full-time Duration: 3.5-year fixed-term appointment Remuneration: The successful
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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
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samples. -Applying Gross's (2015) process model of emotion regulation to the understanding of ADHD. -Exploring the definition/structure of ADHD statistically, and whether emotion regulation problems should
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transportation fundamentals in hydroxide ion-conducting perovskite oxides; (2) To discover the structure-performance relationship of hydroxide ion-conducting perovskite electrocatalysts; (3) To exploit electron
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planes and enable the in-situ growth of active nanoparticles. These lattice planes inherently exhibit distinct properties, including defects, electronic structures, and a tendency to form nanoparticles