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considered. Applicants must show excellent communication and interpersonal skills, and the ability to conduct self-motivated research. They should have either completed or be in the process of completing a
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. The ability to use computer control for targeted synthesis in combination with modern online monitoring methods and process automation opens avenues towards the generation of ‘big data’ and its exploitation in
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the mystery of dreaming and help locate consciousness in the physical world. The successful applicant will join the research team and contribute to the wider project. In particular, the candidate will conduct
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that is effective in simulating the entire pyrolysis process at a relatively low computing cost, whereas its results will be sufficiently accurate to predict the composition and yields of the products
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My research focuses on strongly interacting quantum systems at the interface between condensed matter physics and ultracold atomic gases. In particular, I am interested in the interplay between few
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I supervise projects in particle physics. My main emphasis is on phenomenology, comparison of predictions with experimental measurements. I follow developments in flavour physics: weak decays
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. This position has a two-stage selection process. To apply for this position please submit an Expression of Interest form via the Faculty of Art, Design and Architecture at Monash, within the Department of Design
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extrusion process – through computational 3D modelling – focusing on plant proteins to form animal meat-like fibrous textures. This digital twin will be a vital tool for the industry, enabling
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comparing our experimental observations to predictions made using the Standard Model of Particle Physics. I am a member of the LHCb collaboration, one of the four large experiments at the Large Hadron
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will interact with Australian and international researchers in the fields of solid-state physics, materials science and nanotechnology, gaining state-of-the-art expertise in these areas of research. "2D