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project (Realtime Three-Dimensional Near-Field Microwave Imaging System). This project aims to develop a three-dimensional microwave system that can image and monitor the internal structure of objects in
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candidates who do not completely fulfil all criteria to the level specified. The level of appointment will be determined during the selection process, based on experience and track record. Applicants with a
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A, Step 6 - PhD awarded rate) to $117,108 (Level A, Step 8 - PhD awarded rate) p.a., plus 17% employer's superannuation and annual leave loading Appointment Type: Full-time, fixed-term position for 2
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: From $109,272 (Level A, Step 6 - PhD awarded rate) to $117,108 (Level A, Step 8 - PhD awarded rate) p.a., plus 17% employer's superannuation and annual leave loading - Appointment Type: Full-time, fixed
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achieve recognition and impact in the research area, design PCBs and develops FPGA code, develop image signal processing systems and sensor motion control, collaborate on the assembly, alignment, and
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TOFMS, TOF-SIMS, imaging techniques) and a good understanding of plant/ microbial processes and early life. In addition, you will have an excellent record of publication in the field of organic
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random but can only happen along particular directions. However, as the material is made up of many crystals, and they all have different orientations, the deformation process of a polycrystalline material
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undergraduate, Master’s and PhD students. You will be expected to participate in activities that foster and build further on existing links with government, business, communities and professions in Australia and
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accreditation processes within Australian higher education. Qualifications A PhD in a relevant discipline, or a Master’s level qualification in tertiary education. In exceptional circumstances, equivalent
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at St Lucia in the Business School. Key responsibilities will include: Engineer, prototype, validate and deploy statistical, machine learning models and analytic solutions to solve challenging problems