F-10 Curriculum (V8)
F-10 Curriculum (V9)
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This is an illustrated narrative describes the engineering decisions made when building an artificial reef to slow coastal erosion issues encountered on the Gold Coast. It shows the creativity, innovation and community collaboration required, focusing on the value being an engineer brings to the individual and the local ...
In this lesson students build a simple Pong game in Scratch and consider the physics involved in the game play. They then apply their understanding of force and motion to design their own video game concept. The resource includes links to downloadable lesson plan, websites, videos, apps and an assessment rubric. The lesson ...
In this lesson, students explore connections between science, design, and technologies through the lens of food innovation and food science. Students look at interesting and unusual food products, using food textures as a jumping off point to explore the relationship between chemistry and food. Students then experiment ...
Learn about the differences between animals, and how biologists use programming to help them do science! We'll learn about the features of animals, and how to use their differences in order to classify them. So hop in and learn some science!
This unit of work has been written to support the book The Sugarbag. The book explores themes of Aboriginal culture and customs, adventure and the activities of native bees and their ‘sugarbag’ honey. Some Wiradjuri language words are included. This unit includes practical ideas for using this book in your classroom.
We’re going to use fruit and vegetable scraps to propagate or grow new plants! Investigating plant growth engages young learners in a hands-on science project and helps illustrate plant features and life-cycles. Your plants can even be planted into the garden to produce a future crop. OUTCOMES for this learning activity ...
In this activity, students use a story of a fictional river to explore the impacts of various land uses on the ecological health of a river. This demonstration can be used to introduce science or geography concepts related to your local catchment e.g. land uses, water cycle, human impacts and contaminants or waste in river ...
In this activity, students explore what happens to rain falling on different surfaces.
In this lesson sequence, students explore what happens as water soaks into or runs over the ground. They gain an understanding of a catchment from a sandpit model that show how water moves across the landscape. Students then trace the journey that their water takes every day, from catchment or aquifer to tap.
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 ...
In this culminating activity, students use their understanding about how people use and manage water to respond to hypothetical scenarios about water shortages. In this activity, students discuss 'what if' scenarios: possible reasons for the shortages, possible consequences and ways to manage the situation.
In this classroom activity, students will come to understand some of the Aboriginal and Torres Strait Islander names of the planets, their movement across the sky, and the concepts of ecliptic, zodiac, and retrograde motion. They will focus on Aboriginal and Torres Strait Islander observations of these things and discuss ...
This short video demonstrates how to determine the density of a mineral sample. The video explains how to calculate density, then shows students how accurately measure the mass and volume of a mineral sample.
This 35 page booklet explores tsunamis, what generates tsunamis, where they occur, what happens when they reach land, how tsunamis impact Australians, and the role Geoscience Australia plays in providing the Australian Tsunami Warning System. The booklet contains a glossary, links to online resources, activity ideas and ...
This activity explains commonly used magnitude scales, provides background information on earthquake intensity and includes an extension task to map the impact of an earthquake. The worksheet activity can be adapted for student needs.
This activity introduces lava viscosity and influence on volcanic cone shape. The download includes background information for teachers and an activity sheet for students. The activity involves making lava slime and racing this down a slope. Participants are asked to predict how lava viscosity might influence volcanic shape ...
This activity builds understanding of sonar technique and applications through processing and plotting data to discover a seafloor feature and by bouncing balls on different surfaces and analysing rebound, relating this to ground hardness then extend understanding to 'backscatter' in bathymetry surveys. It is suitable for ...
This activity invites students to explore the phenomena of bubbles and investigate the question, 'What happens when you blow a lot of bubbles?' Students blow dome-shaped bubbles on a flat surface to investigate the properties of bubbles and combinations of bubbles. The activity is designed for use at home or in a classroom ...
This activity invites students to explore how light is reflected from the underside of a water surface. 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.
This activity invites students to explore why the world gets dark so fast outside the circle of the campfire. Using simple equipment, students can investigate the inverse square relationship for light spreading out over an area. The activity includes a list of tools and materials required, assembly instructions, what to ...