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Art Conservation: STEM careers

This is a unit of work about the scientific techniques and ethical considerations in art conservation and the occupations that exist in art conservation. The resource includes: An introduction with teacher notes, student tasks, embedded videos and links to other resources. Specific topics explored include what art conservators ...

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Robotics: STEM careers

This is a unit of work about Robotics, the occupations and industries that use robotics and the current applications and future of robotics. The resource includes: An introduction with teacher notes, student tasks, embedded videos and links to additional resources. Specific topics explored include: What is a robot; applications ...

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Habitat investigations

This is a detailed plan for teaching a unit on habitats. It includes a unit outline, overview and aim, learning outcomes, inquiry questions, background information about habitats, lesson plans and a guide to assessment. The lesson sequence is based on the inquiry based 5Es approach to teaching Science, with a focus on investigations ...

Text

Computing turns 60

This is a collection of eight articles that mark the 60th anniversary of the first computer in an Australian university. The series covers topics from the history of computing, its role in studying global health or species conservation, and how computers can help understand the brain.

Online

Planting fruit and vegetables

In this sequence of lessons students grow a plant from seed, capturing each step and decision as an algorithmic process and recording data for future learning.

Audio

Gus Nossal speaks on being a research scientist, 2008

This is an edited sound recording of one of Australia's best known research scientists and immunologists, Sir Gustav Nossal, outlining his views on medical research. He discusses the qualities necessary for a person to be a successful scientific researcher and talks about the nature and future of science research, suggesting ...

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Exploring atoms: atom structure

See how scientists such as Ernest Rutherford have investigated the structure of atoms. Explore possible models. Fire charged particles at atoms and find which model best fits the results. This learning object is one in a series of six objects. Three of the objects are also packaged as a combined learning object.

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Tectonics investigator

Investigate the internal structure of the Earth using earthquake measurements. Examine the Earth’s outer layer. Fit the Earth's tectonic plates together like a jigsaw puzzle. Identify how plate movements produce many features of the Earth’s surface. Predict the formation of new volcanic islands. This learning object is ...

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Genes

See how genes and genetic engineering work. Build models of DNA, and work out how it is copied as cells divide. Discover how the codes carried in the genes are copied and used to build proteins. See how gene splicing can be used to benefit human lives. For example, model the transfer of a human gene into bacteria, so they ...

Audio

Gus Nossal describes his most noted medical research, 2008

This is an edited sound recording of Sir Gustav Nossal describing the medical research for which he became internationally known. He outlines his contributions to the emerging science of immunology in the 1950s-70s, and how other researchers have been able to make further discoveries based on his initial work. The recording ...

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Garden detective: explore an Australian garden

Search for small creatures in an Australian garden. Find animals such as a scorpion, a lacewing and a cicada. Have a close look at their body parts. Return all the animals to their habitats. This learning object is one in a series of two objects. The series is also packaged as a combined learning object.

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Pushing and pulling

Move animals from a boat to their new home in a zoo. Put them on a cart, then use monkeys to push or pull them up a hill. Use the minimum amount of force needed to move each animal. For example, use a single monkey to push a pelican or use three monkeys to pull a zebra. This learning object is a combination of three objects ...

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Pushing and pulling: assessment

Test your understanding of push and pull forces by moving animals using monkey power. Investigate and then predict the effects of applying a force to move a range of objects of various mass. For example, select two monkeys to move a pelican, and predict whether they will move the pelican slowly, quickly or too fast.

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Garden detective: Australian garden

Search for small creatures in an Australian garden. Find animals such as a scorpion, a lacewing and a cicada. Have a close look at their body parts. Identify groups of creatures that have similar body features such as wings or number of legs. Return all the animals to their habitats. This content is also suitable for use ...

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Wild ride: get a grip

Investigate the role of friction in performance of bicycle tyres. Test how the type of tread affects grip and speed. Choose tyres best suited to track and weather conditions in a time trial. This learning object is one in a series of four objects.