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Are we living sustainably?

This unit of eight lessons poses the question ‘Are we living sustainably?’ Students use prompts to draw on their prior knowledge to explain what they already know about sustainability. They then investigate why water is precious, explore how water is used around their school and at home. Students then research ways that ...

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Clean water is best

In this activity, students discuss why access to clean drinking water is important and discover ways to save water at school and at home. These ideas can be supplemented with additional learning experiences negotiated with students and decided according to interest and need.

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Water use activity

In this indoor or outdoor activity, students (working in small groups or as a class) listen to a story about how two people use water every day. They add water to two jugs (one for each character) which correspond to an amount read in the story. It is a great way to show how much water is used for everyday activities and ...

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School water use audit (Year 4)

In this activity, students identify the water use areas in the school and the water use items found in those areas. On the ‘Water walk’, students also identify any leaking water use items. They assess how water savings can be made in each of these areas.

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Ramps and rollers

This activity invites students to explore the phenomena of rolling objects down a ramp and investigate the question, 'What happens to a roller when you change the ramp by making it steeper?' Students experiment by rolling balls or cylinders down a ramp, and observe how the ramp's steepness affects how far their roller rolls ...

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Output of a Solar Cell

This activity invites students to measure the efficiency of solar cells as they convert sunlight to power. The activity includes a list of tools and materials required, assembly instructions, what to do and notice, an explanation for the underlying science of what students observe and suggestions for further activities.

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Naked Egg

This activity invites students to use a giant cell (a de-shelled chicken egg) to explore the comings and goings of cellular substances. The activity includes a list of tools and materials required, what to do and notice, an explanation for the underlying science of what students observe and suggestions for further activities.

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Bottle Racer

This activity invites students to engineer a bottle racer: a plastic water bottle propelled by energy stored in a wound-up rubber band. The activity includes a list of tools and materials required, assembly instructions, what to do and notice, an explanation for the underlying science of what students observe and suggestions ...

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Tiny Theaters

This activity invites students to tell stories inside cardboard boxes using craft materials and light. Turn on and off LEDs using a homemade switch and a circuit made with copper tape. The activity includes a list of tools and materials required, assembly instructions, inspiration and ideas, and encourages a tinkering mindset.

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Cranky Contraptions

This activity invites students to make Cranky Contraptions, kinetic sculptures that animate a character or scene when a handle is turned. These automata are powered by a simple crank slider mechanism which provides the basic motion. Everyday materials around can be repurposed into these contraptions. The activity includes ...

Video

Bathymetry of Australia

This video is a flythrough around the coast of Australia shows the major topographic features of the seafloor around the continent. Starting in the south west the viewer can see the continental shelf and slope of the southern coast followed by the seamount chains and the Great Barrier Reef to the east. Continuing around ...

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Earthquake monitoring

This video introduces earthquake monitoring using seismometers and seismographs. It also features the National Earthquake Alert Centre. Students are asked to try making earthquakes at home using the accelerometers in their smartphones.

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Weathering, erosion, landforms and regolith - Teacher notes and student activities

This 112 page booklet explores the processes of weathering, erosion and deposition. It highlights the different types of weathering, erosion and transport and provides examples of famous landscapes to enhance the understanding of these processes. It includes case studies about the formation of many Australian landforms ...

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Ice Power

This activity demonstrates how much water expands when frozen. Students quantify water's expansion when it freezes and establish how this can lead to weathering (breakdown) of rocks in areas exposed to frequent freezing and thawing temperatures. It is best to set up the demonstration one day ahead and examine the results ...

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Work sample Year 7 Science: Water purification

This work sample demonstrates evidence of student learning in relation to aspects of the achievement standards for Year 7 Science. The primary purpose for the work sample is to demonstrate the standard, so the focus is on what is evident in the sample not how it was created. The sample is an authentic representation of ...

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Going nuclear

In this unit students are guided to complete a short investigation into the considerations of siting a nuclear power station and then submitting a brief report and reflection.

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Human impact on global systems

In this unit, students will develop their scientific knowledge about global patterns of geological activity.

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Living world

This collection of resources focus on biology concepts in year ten. The resource includes a learning sequence that allows students to investigate the requirements for plant growth using an inquiry-based learning activity. There are also links to external resources that focus on meiosis and body systems.

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Locating the Earth’s shadow zone

The lesson involves modelling observations that scientists made when analysing earthquake waves and their movement through the interior of the Earth; and then interpreting the information to propose the internal structure of the Earth.

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Physical world

This learning activity about reflection and refraction of light is designed to investigate how students work together as a team to apply the scientific knowledge and skills they have learned during class to a new or novel situation. This requires a particular focus in teaching the students explicit teamwork, leadership ...