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Statement of Expectations
On the 9th of December 2022, the Minister for Industry, Science and Technology provided his Statement of Expectations to ANSTO.
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On the 9th of December 2022, the Minister for Industry, Science and Technology provided his Statement of Expectations to ANSTO.
Thirty years of ANSTO's unique capability in monitoring fine particle pollution provides insight on bushfire smoke.
ANSTO hosted an online training workshop for the FNCA (Forum for Nuclear Cooperation in Asia) project Combating Food Fraud using Nuclear Technology (CFF) in early December.
Retrieving an Antarctic ice core more than a million years old presents challenges and opportunities.
In part 1 of this two-part series, ANSTO scientists from across the organisation became film critics to review Christopher Nolan’s new movie, Oppenheimer, which explores the life of the director of the Manhattan Project to develop an atomic weapon.
View the upcoming proposal deadlines for access to ANSTO’s Research Portal. The User Office provides support for research proposals and enables you to leverage our world-class research infrastructure and facilities.
(ANSTO) has welcomed the launch of the new National Science Statement and revitalised National Science and Research Priorities by Minister for Industry and Science, The Hon Ed Husic MP and Australia’s Chief Scientist, Dr Cathy Foley AO PSM.
ANSTO recognised the contribution of individuals and teams to nuclear science and technology at the 2023 ANSTO Awards Ceremony held on 25 July.
The Medium Energy- X-ray Absorption Spectroscopy beamlines will provide access to XANES and EXAFS data from a bending magnet source, optimised for cutting-edge applications in biological, agricultural and environmental science in an energy range that is not currently available at the Australia Synchrotron.
Read about an ANSTO scientist and their work to prepare for a school project or interview.
Publications by ANSTO's National Deuteration Facility.
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The High Performance Macromolecular Crystallography beamline will enable the study of very small (sub-5 micrometre) or weakly diffracting crystals, providing a state-of-the-art high-throughput facility for researchers. MX3 will be able to study the structures of large proteins and protein complexes for virology, drug design and industrial applications via goniometer mounted crystals, in-tray screening, or via serial crystallography methods.
The Advanced Diffraction and Scattering beamlines (ADS-1 and ADS-2) are two independently operating, experimentally flexible beamlines that will use high-energy X-ray diffraction and imaging to characterise the structures of new materials and minerals.
Highlights of the Magnetism Project.