Exchange of expertise
A specialist in particle therapy treatment planning from the Mayo Clinic in the US, Professor Chris Beltran, recently visited ANSTO for an exchange for information.
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A specialist in particle therapy treatment planning from the Mayo Clinic in the US, Professor Chris Beltran, recently visited ANSTO for an exchange for information.
Research undertaken to understand ancient record of algal blooms
Collaborative research predicted the distortion and performance of metal parts made by laser deposition.
ANSTO seeks candidates who are passionate about making a contribution to Australian society through supporting nuclear science and technology.
Today Dr Jenine McCutcheon from the University of Queensland’s School of Earth and Environmental Sciences has been recognised for her outstanding research with the Australian Synchrotron's Stephen Wilkins Medal.
ANSTO is helping change the way science is taught in the classroom - converting that dusty old periodic table into an augmented reality app that brings the elements to life.
High intensity X-ray beam provides insights into the activity of natural killer cells.
Research is being undertaken through an Australian Research Council Discovery Project "Reconstructing Australia’s fire history from cave stalagmites", led by Professor Andy Baker at UNSW Sydney and Dr. Pauline Treble at ANSTO. The project aims to calibrate the fire-speleothem relationship and develop coupled fire and climate records for the last millennium in southwest Australia.
Australia’s new state-of-the-art nuclear medicine facility gets green light.
General manager ANSTO Communications and Stakeholder Engagement was one of the presenters at the IAEA W4NSEC workshop
Specifications, Beryllium Filter, User Manual, Instrument reference
The Australian Academy of Technology and Engineering (ATSE) has elected Professor Andrew Peele, Director of ANSTO’s Australian Synchrotron, to become a Fellow of the prestigious organisation.
Imperial College London researchers tapped into ancient geological data locked within precariously balanced rocks using a new technique to boost the precision of hazard estimates for large earthquakes.