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Field
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/scholarship agreement: 1 year with the possibility of extension Project leader: Przemysław Spurek Project title: Effective rendering of 3D objects using Gaussian Splatting in an Augmented Reality environment
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. Desirable Demonstrated knowledge/experience in: multiphase flow porous media flow microfluidic fabrication and experiments 3D printing surface chemistry Demonstrated programming skills in: Matlab C++ Python
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, perspectives, and their personal skillset to the discovery, development, and commercial translation of new 3D nanoscale magnetic metamaterials. What You’ll Do in this Project Size, weight, and power: the future
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or equivalent Skills/Qualifications Requirements: • PhD in Chemistry. (Obtained the degree in a maximum of 2 years before the call). • Experience in 3D printing, tissue engineering and cell culture. • Previous
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generic compression tools exist, they often fail to fully exploit the specific redundancies found in 3D tomographic data. You will exploit your signal processing knowledge with statistical mathematical
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been directly observed in planet forming discs around young stars (protoplanetary discs) and is inferred to be occurring around black hole discs. My research projects use a combination of 3D and 1D
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within the Centre of Excellence for Astrophysics in 3D: ASTRO 3D. As a member of my group, you will have the opportunity to interact with astronomers across Australia and the world, in fields as diverse as
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forming a moist microbial rhizosphere habitat. Your work will build on the process-based soil-rhizosphere-plant model, developed at the Agrosphere Institute, which integrates a 3D functional-structural
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a tool for mechanistic studies and preclinical therapeutic testing. PhD Project 2. Engineering Multicellular 3D In Vitro Models to Elucidate Bone Regeneration Mechanisms Large bone defects and non
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in human monolayer and 3D cartilage cultures. Mechanical loading and biochemical stimulation will assess how enhancer activity responds to physiologically relevant cues, using cartilage cell lines