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group, we synthesise these functional nanomaterials from the bottom-up, using protocols of molecular beam epitaxy and on-surface supramolecular chemistry. We study these systems by means
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known as Team COMPAS -- includes a number of amazing undergraduate and graduate students, postdocs, alumni, and other fantastic collaborators. Please contact me if you are interested in joining our group
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theoretical colleagues. All research takes place within our dynamic particle physics research group with academics and postdocs, as well as graduate and undergraduate students. Some work will be purely
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Electrochemistry is funded by the Australian Research Council through a Discovery Project entitled “Molecular Engineering of Locally Concentrated Ionic Liquid Electrolytes”. The purpose of this scholarship is to
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. This internship is ideal for a PhD student in the early stages of their studies who is looking to expand their skills in nanoparticle formulation, microfluidics, and translational biotechnology within a dynamic
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project within an NHMRC-funded program focused on dementia research. Using a systems biology framework, the project will integrate genomic and lifestyle data to identify key molecular pathways and risk
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the area of microbially induced calcium carbonate precipitation is limited due to poor understanding of bio-mineral reaction kinetics at molecular level; highlighting the need for unpinning the role
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the opportunity to engage in a dynamic environment with members of QUT's: Faculty of Science School of Chemistry and Physics Centre for Materials Science Bioelectronics and Biosensors group.
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, there is an urgent demand for accurate data on ion-beam collisions with atomic and molecular targets for the development and maintenance of fusion reactors, treatment planning in hadron therapy, and
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to: Multimorbidity post-sepsis Health literacy and navigation in post-sepsis care Digital tools and technology-enabled follow-up Nurse-led models of care The successful candidate will join a dynamic and collaborative