Strategic research agreement
Strategic partnership with the University of Sydney expanded to continue a long history of research collaboration.
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Strategic partnership with the University of Sydney expanded to continue a long history of research collaboration.
Learn. Create. Innovate
Radiation can be described as energy or particles from a source that travel through space or other mediums. Light, heat, and wireless communications are all forms of radiation.
Neutron scattering techniques help characterise the structure of a particle based emulsifier
The Food Materials Science project applies nuclear-based techniques to investigate fundamental and industrial problems of national significance in food science, including food processing and product development. ingredient selection, food, and health
Join us for this online webinar to explore and discuss the huge opportunities in growing a dynamic and impactful future nuclear workforce.
ANSTO has agreed to participate in an Australian trial of a review of research infrastructure access proposals in which applicants remain anonymous to aid the removal of structural barriers to the career progression of Women in STEM.
Update on Nuclear medicine production at ANSTO.
The United Uranium scholarship recognises outstanding ability and promise in the field of nuclear science and technology, specifically as it applies to nuclear energy.
Think Science! 2023 Summary and Results
Supporting healthcare professionals in Australia with easy-to-access resources related to ANSTO’s Gentech® Generator.
The new facility will be built around a product line of ANSTO’s design – a new Technetium-99m generator – that will enable greater process automation than is possible with existing technology, leading to improvements in efficiency, quality and importantly the highest levels of production safety.
The Platypus instrument can be used to study all-manner of surface-science and interface problems, particularly related to magnetic recording materials and for polymer coatings, biosensors and artificial biological membranes.
Kowari, a residual stress diffractometer, can be used for ‘strain scanning’ of large engineering components as large as 1000 kilograms.