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First light achieved for new micro-computed tomography beamline under Project BRIGHT
Project Bright, the construction of eight new beamlines at ANSTO’s Australian Synchrotron has reached a milestone by achieving ‘First Light’ for the new micro-computed tomography (MCT) beamline in late NovembeR.

COVIDSafe Plan Victoria
This COVIDSafe Plan describes the actions that ANSTO will take to keep our staff, contractors and visitors and platform users and collaborators safe and minimise the risk of the spread of COVID-19 infection.

Generation IV Nuclear Reactors
Australia is as a member of the Generation IV International Forum (GIF), a cooperative international endeavour, involving the participation of 12 other nations and the European Union to work together on long term research on advanced nuclear technologies.
Building a new neutron reflectometer
A sparrow with 257 parts weighing more than 29 tonnes arrives safely at ANSTO

Role at ANSTO

Role at ANSTO

Role at ANSTO
Plans to safely manage medical and research waste
ANSTO will make an application to the independent nuclear regulator, ARPANSA, to vary its license for its Interim Waste Store. The original operating license was approved in 2015, enabling the facility to hold what is called a TN-81 cask of intermediate-level radioactive waste that was safely repatriated from France in 2015.

Role at ANSTO

Laboratories
The Australian Centre for Neutron Scattering Laboratories consists of four laboratories adjacent to the Neutron Guide Hall within the OPAL Neutron Beam Facility.

Role at ANSTO
Strong representation at ICRS-10

Role at ANSTO
Dr Richard Mole is an instrument scientist co-responsible for the cold-neutron time-of-flight spectrometer PELICAN.
Neutron scattering scientists recognised by their peers

Infrastructure - Magnetism
Investigations of various aspects of magnetism can be conducted on all neutron-scattering instruments at OPAL.

Partnerships
ANSTO works in partnerships and collaborative ventures with national and international organisations. Partner with ANSTO.
Patented technology removes key radioactive contaminant in critical minerals processing
ANSTO has been granted a patent in Australia and a number of European countries for the separation, a key radioactive contaminant in critical minerals processing, actinium-227, from process liquors used in minerals extraction.
Running (simulated) rings around cancer
Ultra-realistic simulations of a PET imaging system for next-generation radiotherapy: Collaboration giving back to the open source science community.
