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investigate the optimal methods for combining multi-satellite InSAR with a network of Kurloo GNSS devices to provide robust 3D ground motion monitoring from space. The potential benefits may include
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sustainable energy materials through their atomic architecture Imaging symmetry at the atomic scale Understanding how nanocrystals grow Tuning the perovskite structure, from semiconductor to superconductor
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current digital performance and co-design exemplars for practice, policy settings and scholarship. Through a qualitative, multi-method approach the research will generate resources for industry, case
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the responsibility for the big shift to decarbonisation. We have the scale to make a difference and seek new, low-carbon technologies and methods that will overcome barriers and help transition the steel, iron
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– you don't have to be a STEM student to apply! The opportunities we are offering The Next Generation Graduates Program is a cohort-based, industry driven, multi-disciplinary graduate training program
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My research focusses on understanding stars: their evolution and chemical composition, and how they move throughout our galaxy. Most of what we know about the universe comes from starlight, but
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the Collaboration for Evidence, Research and Impact in Public Health (CERIPH). CERIPH is a multi-disciplinary research centre within the Curtin School of Population Health (SoPH) with expertise and research strength
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is to develop novel, integrated ecological models using linked multi-level (individual, community and societal) data sources. Integrating these data sources will identify new opportunities
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The goal of my research is to synthesize and characterize low-dimensional nanomaterials with atomic-scale precision and tailored electronic, optoelectronic, magnetic and chemical properties. In my
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. We shall combine the processes to demonstrate bio-sintering. A pilot scale setup will be developed to develop the design parameters for bio-sintering in specific applications. Student type Future