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PhD scholarship opportunity in Materials Science and Engineering: NOₓ production by plasma bubble reactor Job No.: 697669 Faculty/Portfolio: Faculty of Engineering Location: CSIRO Clayton, Victoria
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We are working on creating a new type of Radio-Frequency Integrated Circuit technology based on optically induced plasmas in silicon to create photo-conductive switches. This combines low-cost
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of Technology, Department of Applied Physics and Science Education, group Fluids and Flows).
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previous thesis. The innovation lies in the use of highly emissive cathodes (up to 20 A) and a new microwave-based plasma ionization source. The second year will focus on a precise experimental description
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Joint Research Unit (UMR 7345) overseen by Aix-Marseille University and the CNRS (primarily affiliated with the CNRS Engineering and CNRS Physics institutes, and secondarily with the CNRS Chemistry and
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linear plasma device which replicates the expected heat and particle fluxes expected at the wall of a fusion reactor. This PhD position will use these unique setups to address questions such as: how well
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the emission of light and ions from plasma that you generate. Qualifications You have (or will soon obtain) an MSc degree in (Applied) Physics Knowledge of experimental atomic, plasma and/or laser physics is an
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set a course for the future – a future that you can help to shape. The Department of Chemistry in the Faculty of Science is looking for one full-time doctoral scholarship holders in the field of plasma
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(IAA), a Research Assistant is required for a period of 6 months, full-time, to support the development and translation of an innovative non-thermal plasma (NTP) technology for sustainable water
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mass ejections, and the rapid expansion of research into exoplanetary radio emissions using large radio telescopes (NenuFAR, LOFAR). Methods Use and processing of space-based (radio, particle, magnetic