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Material world – Stage 2

In this lesson sequence, students investigate how different properties of materials affect their suitability for products. They will develop their knowledge and understanding of the properties and performance of a variety of materials through observation and manipulation. They have the opportunity to design and make an ...

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Living world – Stage 2

In this lesson sequence, students identify characteristics of living things and distinguish living things from non-living things. They identify and describe patterns and understand how scientists use external features to group living and non-living things. Students describe and follow a sequence of steps involving decisions ...

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Physical world – design and production investigation

In this investigative task, students explore how rolling objects are affected by changes in forces including stopping, starting, rolling faster and slower and in different directions. They explore the effects of force on objects by designing a marble push course. Using a straw to exhale (push) air, students manoeuvre a ...

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Material world – ES1

In this lesson sequence, students investigate how the properties of materials determine their use in design solutions while introducing students to the material sciences and design thinking. Student investigate, plan and design a chair for their favourite teddy or doll to sit next to them while they are completing their ...

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Living world – ES1

In this lesson sequence, students learn about the characteristics and needs of living things. They recognise that living things have basic needs including air, food and water. Students apply their learning by investigating the growth of a living thing.

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Physical world – design and production investigation

This investigative task focuses on energy transformations between kinetic (movement), electric and light energies. Students design, test and evaluate a system that uses energy transformations to meet an identified need. They work in pairs to design and construct a wind turbine tower that demonstrates how different types ...

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Algorithms: Ngarrindjeri weaving

In this lesson, students will practise breaking down a process into smaller parts or steps as an introduction to computational thinking.

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Physical world – design and production investigation

In this lesson sequence, students work in pairs to explore how light energy from the sun is converted to heat energy to cook food using a solar oven. They investigate types of solar oven designs while exploring materials that are the most efficient in achieving heat absorption and insulation. Students collect, analyse ...

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Material world – Stage 1

In this lesson sequence, students investigate how properties of materials determine their use. Students identify a range of natural materials used by Aboriginal and Torres Strait Islander Peoples for a specific cultural purpose. There is an optional ‘maker hour’ for students to produce, implement, test and evaluate a shelter ...

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Living world – Stage 1

In this lesson sequence, students focus on the observable features of living things and their environment. Students follow and represent sequences of steps and decisions (algorithms) to solve problems.

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DT Challenge - 5/6 Blockly - Biology

Learn about the differences between animals, and how Biologists use programming to help them do science! We'll learn about the features of animals, structural and behavioural adaptation, and how to use these properties in order to identify them. So hop in and learn some science! This course is based on the Year 5 science ...

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Automated soil moisture sensor

The soil moisture sensor project integrates science understandings and computational thinking to solve a problem about sustainable watering practices. This lesson was devised by Trudy Ward, Clarendon Vale Primary School, Tasmania.

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Paper Circuits

This activity invites students to use copper tape and surface-mount LEDs to make creative circuits on a flat surface, like a piece of paper. Students can make light-up greeting cards or create three-dimensional pop-up paper sculpture that have working lights in them. The activity includes a list of tools and materials required, ...

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Make your own microbit seismometer instructions and classroom activities

This 12 page guide explains how to set up a micro:bit as a mini seismometer that will detect shaking, and how to collect and display the data. The guide also includes classroom-ready activities on how to introduce and explore vibrations and earthquake monitoring.

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Water communicators

In this activity, students discuss what it would be like to have no water and how they can save water to prevent this happening. They take a tour of the different locations around the school where water is used and take photographs of students demonstrating ways to save water at that location. They use the photographs to ...

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Balancing Sculptures

This activity invites students to explore balance and stability by designing and building whimsical kinetic sculptures that tilt, slide, and suspend everyday objects and ordinary materials into surprising arrangements. Students explore stability, centres of gravity, balanced forces and symmetry through this hands-on, tactile ...

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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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Future transport – air taxis

In this lesson, students learn about advanced air mobility, and explore the infrastructure requirements to adapt cities and towns for eVTOLs.

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Thermoregulation in spacesuits

Space exploration demands technological advances that enable survival in extremely harsh environments. In this lesson, students will explore contemporary spacesuit design and create their own representation of the suit’s thermoregulation system.

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Biomimicry glider

In this lesson students explore the dynamics of flight by examining animal adaptations and apply their learning to think like an aeronautical engineer and design their own glider