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instrumentation. The goal of the project is to design and develop a wearable ultrasonic imager, combined with optical measurements, for monitoring uterus contractions during pregnancy to detect the early signs
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for practical applications. This project aims to develop a new OAM platform using well-designed 2D material nanocomposites based on MXenes combined with functional organic molecules, and to demonstrate prototype
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expertise and that of the team to rapidly identify problems, propose solutions, and prototype, test, and validate new ideas that expand our core technical capabilities. Your work will include designing and
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, laboratory measurements, data analysis, prototype development, publications, and proposal development, while working collaboratively with faculty, students, and external research partners. In accordance with
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aims to develop a new OAM platform using well-designed 2D material nanocomposites based on MXenes combined with functional organic molecules, and to demonstrate prototype devices for large modulating
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, cloning, microscopy/biological imaging, FACS, bioinformatics, and/or protein biochemistry. A strong publication record in relevant fields demonstrating these skills is highly preferred. Additional
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development of the video-based prototype. You will work closely with Model Health and Moveshelf, embedded in the multidisciplinary "Care is coming home!" program, a 5-year consortium of 2 technical universities
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, with part of your time spent on-site at Model Health (Leuven, Belgium) for the development of the video-based prototype. You will work closely with Model Health and Moveshelf, embedded in
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, and related laboratory techniques. Proficiency in developing and running BSL2 small animal infection models for bacterial and fungal pathogens. Proficiency in mammalian cell culture, microscopy imaging
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confidential support Convenient onsite GP, imaging, and physiotherapy clinics Pre-Employment Checks Macquarie University cultivates a workplace defined by safety, ethical conduct, and strong integrity. Prior