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Cosmetic chemistry

Deuteration and nuclear techniques can contribute to the science of beauty.

Samples - Infrared microspectroscopy

Samples - Infrared microspectroscopy

The Infrared microspectroscopy microscopes can record spectra from a range of different samples; from thin microtomed sections to polished blocks and embedded particles. This section highlights the types of samples that can be analysed using the IRM beamline

OPAL reactor back online after planned long shutdown

ANSTO’s OPAL multi-purpose research reactor at Lucas Heights has officially returned to power and recommenced operations, following a months-long planned shutdown to carry out essential maintenance and upgrades.

Food Materials Science

Food Materials Science

The Food Materials Science project applies nuclear-based techniques to investigate fundamental and industrial problems of national significance in food science, including food processing and product development. ingredient selection, food, and health

Giulio
Consultant Health Physicist

Giulio Ruiu (also known as Julian) brings over a decade of specialised experience in radiation safety, with a strong focus and passion for radiation protection and the practical application of safety principles.

Submissions to nuclear inquiries

ANSTO has made two public submissions to parliamentary inquiries with another to be submitted in February 2020 on matters relating to nuclear technologies, their peaceful applications, and the nuclear fuel cycle.

Sam Sonter
Senior Health Physicist

Samantha is a Senior Health Physicist with Radiation Protection Services.

Astronaut floating cells

Radiation biology

In space, without the protection of the magnetosphere, the type and dose of radiation is considerably different to what is naturally experienced on earth.

Cryogenic Permanent Magnet Undulator (CPMU) source for the BRIGHT Nanoprobe beamline

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.

Dr Carol Tadros
Science Research Leader and Environmental Scientist

Role at ANSTO

Pagination