91 algorithm-development-"Multiple"-"Prof"-"Prof"-"Simons-Foundation"-"U.S" positions at University of Canterbury
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provisions and professional development opportunities Kia hiwa rā, kia hiwa rā! He hiahia, he pūkenga nōu ki te mahi a te Kaiwhakahaere Ratonga Akoranga? Nāia te pōwhiri nā Te Whare Wānanga o Waitaha kia tono
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the guidance of experienced mechanical fitters you'll have hands-on learning opportunities to develop technical skills, gain industry knowledge and qualifications, while contributing to the operational
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to develop technical skills, gain industry knowledge and qualifications, while contributing to the operational efficiency and safety of the university's infrastructure. You will complete a structured training
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professional development opportunities Do you thrive in a fast-paced environment and enjoy supporting effective systems and processes? Are you ready to play a key role in supporting enterprise risk, audit, and
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experience using and managing database systems and internet research techniques. Ability to plan, develop and maintain electronic and paper-based filing systems. Knowledge of meeting and minute taking
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annual leave provisions and professional development opportunities Kia hiwa rā, kia hiwa rā! He hiahia, he pūkenga nōu ki te mahi a te Tautāwhi? Nāia te pōwhiri nā Te Whare Wānanga o Waitaha kia tono mai i
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) position Generous annual leave provisions and professional development opportunities Kia hiwa rā, kia hiwa rā! He hiahia, he pūkenga nōu ki te mahi a te Mechanical Technician? Nāia te pōwhiri nā Te Whare
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annual leave provisions and professional development opportunities Kia hiwa rā, kia hiwa rā! He hiahia, he pūkenga nōu ki te mahi a te Tautāwhi? Nāia te pōwhiri nā Te Whare Wānanga o Waitaha kia tono mai i
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of university holidays Generous annual leave provisions and professional development opportunities 1 X 0.8 FTE (30hours) position Tuesday to Saturday: Academic year hours: Tuesday 7.45am - 4.15pm (7.5) Wednesday
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and magnetic properties, offer a promising platform for the development of next-generation computing technologies. This project explores the potential of topological defects (or "solitons") in