Showing 81 - 100 of 153 results
2025 Think Science Competition Summary and Results
Think Science! 2025 Summary and results
Food processing and development
Research can improve both food processing and food product development.
Archive
See details of previously published customer updates from our Health products team.
Online learning
Discover the amazing world of nuclear science from your classroom. Join us for Meet an Expert, Nuclear Science Inquiry Skills, Junior Science, and Online Depth Study sessions for Chemistry, Physics and Investigating Science.
Role at ANSTO
Water usage and discharges
ANSTO provides a summary of water usage and discharge for FY2024 - FY2025
Corporate Publications
Explore ANSTO's range of publications and reports available for the public.
Role at ANSTO
Highlights - Cultural Heritage
Over the last decades, neutron, photon, and ion beams have been established as an innovative and attractive investigative approach to characterise cultural-heritage materials.
Bringing radiochemistry to life
Dr.
Australian access to overseas synchrotrons
The International Synchrotron Access Program (ISAP) is administered by the Australian Synchrotron and is designed to assist Australian-based synchrotron users to access overseas synchrotron related facilities.
Feather Map of Australia
Kathleen manages the quality and document management systems, and oversees procedures for inspection, testing, and calibration of equipment and systems, to support the accelerator operations and beam lines.
Nanoprobe beamline (NANO) - under construction
The BRIGHT Nanoprobe beamline provides a unique facility capable of spectroscopic and full-field imaging. NANO will undertake high-resolution elemental mapping and ptychographic coherent diffraction imaging. Elemental mapping and XANES studies (after DCM upgrade) will be possible at sub-100 nm resolution, with structural features able to be studied down to 15 nm using ptychography.
Role at ANSTO
Infrared microspectroscopy
The Infrared Microspectroscopy beamline combines the high brilliance and collimation of the synchrotron beam through a Bruker V80v Fourier Transform Infrared (FTIR) spectrometer and into a Hyperion 3000 IR microscope to reach high signal-to-noise ratios at diffraction limited spatial resolutions between 3-8 μm.