Showing 381 - 395 of 395 results
Specialist expertise and capabilities at ANSTO enable an understanding and improvement of current and advanced nuclear fuel materials
With a well-established portfolio of nuclear research and the operation of Australia's only nuclear reactor OPAL, ANSTO scientists conduct both fundamental and applied research on fuel for current, advanced, and future nuclear technology systems.
Role at ANSTO
Role at ANSTO
Dr Joseph Bevitt is a senior instrument scientist on the Dingo radiograph/tomography/imaging station, and scientific coordinator for the Australian Centre for Neutron Scattering.
ANSTO recognises the contribution of staff for outstanding work, innovation, and excellence
ANSTO announces the recipients of the 2022 organisational awards
Role at ANSTO
Eduroam Service
ANSTO provides eduroam services for partnering institutions in Australia and around the world.
ANSTO recognises scientific achievement, leadership, external collaboration and outreach at Awards event
ANSTO recognised the contribution of individuals and teams to nuclear science and technology at the 2023 ANSTO Awards Ceremony held on 25 July.
Understanding fine particle pollution
Thirty years of ANSTO's unique capability in monitoring fine particle pollution provides insight on bushfire smoke.
Fusion research in Australia
Australia part of global renaissance in fusion power research symbolised by ITER experiment
Advancing particle therapy
Meeting of minds about potential next-generation cancer treatment for Australians
Through the looking glass: the strange atomic structure of glassy materials
The mechanical, electrical, chemical, optical and thermal properties of glass, as determined by its chemical composition and atomic structure, make it a highly useful material with a myriad of applications.
Role at ANSTO
- Leader, Energy Materials Research Project
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.