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finite element methods, which demand extensive data and are costly, PINNs embed governing physical laws directly into the learning process. This allows effective management of limited and noisy data
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recycling: Project 1 (2 PhD students): Cost-Efficient Direct Recycling for Metal Oxide Cathode Materials – These projects focus on developing low-cost, scalable strategies for the direct recycling and
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of hydrogen migration through isotopic, noble gas and micro thermometric analyses of hydrogen-bearing inclusions. Eligibility: Applicants may include Australian citizens, permanent residents of Australia and
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record in a real-world environment. We see internships as a catalyst for innovation within the organisation. As such, you'll be involved in both operational and exploratory tasks. Your internship will be a
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Medical Research Council (NHMRC). For more details about our newly established lab, please visit our website: https://www.qizhang-lab.com/ Available Resources: The candidate will have access to state
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irrigated with water from the River Torrens irrigated with recycled water pumped from the North Glenelg Wastewater Treatment Plant via the Glenelg-Adelaide Pipeline (GAP); and not irrigated at all. See the
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. Interested applicants should apply via the SmartSheet below (see 'Applications'). AIML will review applications to determine eligibility and make decisions on acceptance. Stipend: The scholarship will be
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the National Assessment Centre in Sydney, the Development Program in Sydney and the Scholar Summit. For full details on the eligibility criteria please visit Westpac Scholars . * PhD students may also receive