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Field
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involves leading research on the political economy, institutional, policy and regulatory challenges and opportunities for reducing material throughput and energy use in production and consumption in the UK
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bonded joints and interconnects in advanced and dissimilar-material systems using low-temperature bonding and related joining methods. Develop bonding processes and interlayer/material systems for advanced
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, the University is deeply embedded in the social, economic, and environmental fabric of Tasmania, working in close partnership with communities, industry, and government to address key challenges in education
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Applicants must hold a PhD (or other equivalent degrees) in chemical engineering, chemistry, materials science or other relevant related field. Experience with electrocatalysis, or similar
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of assays, a wide range of analytical approaches (such as separation science, mass spectrometry and/or immunoassay), a PhD in a relevant scientific subject with considerable analytical chemistry content
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. Rather than treating infrastructure as fixed physical objects, the PhD project investigates roads as dynamic political, cultural, and material assemblages that shape relationships between people
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We are looking for a Research Fellow to lead experimental efforts to investigate the 2D material-water interface. The role will focus on using femtosecond time-resolved photoemission electron
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emerging technologies. Sustainability is a top priority for SC3DP, which offers material development and control services that combine artificial intelligence, big data, and other digital tools for process
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Centre. It will use mainly material collected in Norway. The purpose of the fellowship is research training leading to the successful completion of a PhD degree. The fellowship requires admission
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• Possess a PhD in Biomedical Engineering, Materials Science and Engineering, or equivalent. • Preferably with 5 years of postdoctoral experience in a relevant research field. The following