Next-gen wearable electronic devices
Ultra-flexible electronics has many potential applications within areas such as for example the military, healthcare and energy.
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Ultra-flexible electronics has many potential applications within areas such as for example the military, healthcare and energy.
During the scheduled shutdown of the OPAL multi-purpose reactor, an ANSTO engineering and project team has installed a new safety shutdown instrumentation and control system (I&C).
An international research team has discovered how a bacterial toxin, known as Ssp, is capable of entering and killing a wide range of living cells, including human cells using the Australian Synchrotron.
The first experimental evidence to validate a newly published universal law that provides insights into the complex energy states for liquids has been found using an advanced nuclear technique at ANSTO.
A new radiocarbon dating facility opened at the University of New South Wales (UNSW) will complement the extensive radiocarbon facilities at ANSTO’s world-leading Centre for Accelerator Science
ANSTO, the home of Australia’s nuclear science expertise and the Powerhouse Museum, home of Australia’s excellence and innovation in the applied arts and sciences will collaborate on research projects, establish an Indigenous Cultural Research Scholarship and combine efforts on STEM outreach activities.
Australia’s knowledge centre for nuclear science and engineering, ANSTO, announced an exciting career opportunity for Aboriginal and Torres Strait Islander peoples.
The Titan Krios cryo-electron microscope reveals the inner workings of life at the cellular level.
ANSTO physicist supports launch of new carbon ion therapy treatment service in Austria.
A new study by researchers from Curtin University using the infrared (IR) and X-ray fluorescence microscopy (XFM) beamlines at the Australian Synchrotron has provided a better understanding of the chemical and elemental composition of latent fingermarks.
Phase contrast tomography shows great promise in early stages of study and is expected to be tested on first patients by 2020.
Australian and Taiwanese scientists have discovered a new molecule which puts the science community one step closer to solving one of the barriers to development of cleaner, greener hydrogen fuel-cells as a viable power source for cars.