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funded by an EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description A PhD position is available in the School of Mathematics and Physics at the University
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Australian Institute for Bioengineering and Nanotechnology (AIBN) Collaborate on world class research, supporting studies into MND Access state-of-the-art facilities and a range of on-site services Join a team where your work genuinely makes an impact Based at our vibrant St Lucia Campus About...
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arrangements including hybrid on site/WFH options and flexible start/finish times, and genuine career progression opportunities via the academic promotions process. About You Applicants should possess a PhD or
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arrangements including hybrid on site/WFH options and flexible start/finish times, and genuine career progression opportunities via the academic promotions process. About You Applicants should possess a PhD or
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possess a PhD or near completion of a PhD in the field of Archaeology. Additionally, you will demonstrate: Knowledge in one or more relevant fields of Archaeology. An ability to teach effective courses
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flexible start/finish times, and genuine career progression opportunities via the academic promotions process. About You Applicants should possess a PhD or near completion of a PhD in the field
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career progression opportunities via the academic promotions process. About You Those expressing interest in these roles will need to hold a PhD in Psychology or a related discipline. The University
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will have completion of a relevant PhD (or successful PhD confirmation) in the past three years, in the area of Education. Additionally, candidates will have with the ability to work within a team, while
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to demonstrate: Completion, or expected completion within 6 months, of a PhD in a relevant discipline area. Applicants with academic qualifications in human sensorimotor control, neurophysiology, experimental
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completion of a PhD in the field of superconducting circuits or nanomechanics. Profound experience with nanofabrication of nanomechanical and superconducting quantum devices. Experience with COMSOL simulation