
Materials in extreme environments
Materials researchers focus on development, performance and in-service degradation of nickel-based superalloys, reinforced carbon-Carbon (C/C) composites, and ultra-high temperature ceramics (UHTC).
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Materials researchers focus on development, performance and in-service degradation of nickel-based superalloys, reinforced carbon-Carbon (C/C) composites, and ultra-high temperature ceramics (UHTC).
Bushfires in proximity to ANSTO during the 2018 bushfires.
Five exceptional female science communicators are part of a larger team who use skills in education and engagement to promote an interest in science amongst the public and students.
Cyclotek and ANSTO have announced the launch of a Joint Venture (JV), to establish Australia’s first GMP (Good Manufacturing Practice) theranostics facility starting in Melbourne, Australia.
ANSTO expertise focused on understanding of reduced water levels at Thirlmere Lakes in three year collaborative project
A new source added to ANSTO’s cosmogenic toolkit to study past climate and landscape change
The instrument is designed to measure inelastic neutron scattering, or do neutron spectroscopy.
New research published in the journal Nature Nanotechnology shows that the next generation of lithium-sulphur (Li||S) batteries may be capable of being charged in less than five minutes, instead of several hours as is currently the case.
To enable the production of nuclear medicine, ANSTO operates manufacturing, processing and distribution facilities in Sydney.
With world-class experts in groundwater and major contributions in this area over two decades, ANSTO completed a major project report on Improving groundwater sustainability and renewability using isotope hydrochemistry in NSW for the Department of Planning and Environment (NSW) and National Water Grid earlier in the year.
The Graduate Institute is part of ANSTO’s Innovation Precinct and links all graduates together to create a network of Australia’s brightest young minds focused on the future.
An investigation that set out to resolve some of the uncertainty in the sources and quantities of pollutants reaching Antarctica has produced a new experimental technique to identify and characterise recently terrestrially-influenced air reaching Antarctica.