
Highlights - Energy Materials
Highlights of the Energy Materials Project.
Showing 41 - 60 of 63 results
Highlights of the Energy Materials Project.
Neutron Capture Enhanced Particle Therapy developed at ANSTO.
Terahertz/Far Infrared beamlines assisted investigation into possible composition of lower atmosphere of Saturn's moon Titan.
Participants undertook IAEA training hosted by Macquarie University and ANSTO on use of radionuclides for soil and water investigations.
Guidance for obtaining and maintaining human or animal ethics approval at the Australian Synchrotron.
Theinstrument is typically used to study diffusing water molecules or yet larger molecules like polymers or biological molecules. In addition, Emu can reveal quantum-mechanical tunnelling.
The Advanced Diffraction and Scattering beamlines (ADS-1 and ADS-2) are two independently operating, experimentally flexible beamlines that will use high-energy X-ray diffraction and imaging to characterise the structures of new materials and minerals.
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.
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.
Science and medical experts meet in Adelaide to discuss great potential of particle therapy in Australia
With enhanced submicron spatial resolution, speed and contrast, the Micro-Computed Tomography beamline opens a window on the micron-scale 3D structure of a wide range of samples relevant to many areas of science including life sciences, materials engineering, anthropology, palaeontology and geology. MCT will be able to undertake high-speed and high-throughput studies, as well as provide a range of phase-contrast imaging modalities.
Publications and resources from the Powder Diffraction beamline.
A new systematic investigation of the origins of atomic structural distortions in compounds containing uranium has relevance for spent nuclear fuel .