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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

Above OPAL pool

Nuclear stewardship

ANSTO is Australia’s nuclear centre of excellence. It has a mandated role to advise the Australian Government on all nuclear and science technology matters.

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Online learning

Discover the amazing world of nuclear science from your classroom. Join us for Meet an Expert, Nuclear Science Inquiry Skills, Junior Science, and Online Depth Study sessions for Chemistry, Physics and Investigating Science.

Careers

Careers at ANSTO

ANSTO seeks candidates who are passionate about making a contribution to Australian society through supporting nuclear science and technology.

nandin Innovation Centre team and building

PhD Scholarship - Innovation, Design and Technology

Three-year full-time PhD program is in partnership between the nandin Innovation Centre (ANSTO) and Design Factory Melbourne (Swinburne University). The PhD is based at ANSTO, Lucas Heights, Sydney, NSW.

Infrared microspectroscopy

Infrared microspectroscopy

The Infrared Microspectroscopy beamline combines the high brilliance and collimation of the synchrotron beam through a Bruker V80v Fourier Transform Infrared (FTIR) spectrometer and into a Hyperion 3000 IR microscope to reach high signal-to-noise ratios at diffraction limited spatial resolutions between 3-8 μm.

ANSTO Staff

Our People

Our people, the custodians of Australia’s nuclear and accelerator expertise, are amongst our nation’s most talented researchers, scientists, engineers and nuclear experts. Everyday we work to respond to the growing nuclear science and technology needs of Australia and the world.

Micro-Computed Tomography beamline (MCT)

Micro-Computed Tomography beamline (MCT)

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.

Fish

Research to improve food quality and design for better health

We are using nuclear and other methods to improve the traceability of food to ensure safety and security for consumers and industry, optimise the various functions of food and its production and understand the fundamental mechanisms that link some food to an immune response

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