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Listed under:  Science  >  Matter  >  Chemical compounds  >  Inorganic compounds  >  Inorganic hydrides  >  Water
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Unit for Reception to Year 2 Butterflies: Engaging with nature

This unit of work engages students in preparing butterfly gardens in their schoolgrounds. It explores the characteristics of living and non-living things, features of caterpillars and butterflies, the lifecycle of butterflies, survival requirements, and the characteristics of butterfly gardens. The unit includes worksheets, ...

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The Manual: Butterfly Gardening in South Australia

This Manual assists teachers and students establish butterfly gardens in their schoolgrounds. It provides information about butterfly lifecycles, habitats, adaptations, and requirements to live. The manual also provides local Indigenous perspectives of butterflies, along with useful links to websites. The manual accompanies ...

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Life Cycle of a Frog

This digital text presents information about the life cycle of frog using a visual diagram, and it is for teachers to share with students. It includes labels, arrows and technical vocabulary. The resource includes a teaching sequence related to the Big Six components of literacy development (oral language, phonological ...

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Making a large wicking bed

Wicking beds are a fantastic invention, allowing crops to be watered more efficiently. Making a large wicking bed does involve a few steps and some preparation, however the benefits of this extra effort are water conservation, improved plant growth and better crops. The design of the wicking bed also provides opportunities ...

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Catchment management: water sustainability

Water is an important resource, and is required by all living species to survive. Water is also important for many industries and businesses. This activity investigates the different land uses over time across your local catchment. OUTCOMES are for children to: understand the natural and urban water cycle; learn about the ...

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Catchment management: the drain is just for rain

Stormwater originated as rain and flows into creeks, rivers and other water bodies. Any rubbish or chemical pollution collected during this journey can end up polluting the waterways. This activity looks the impacts of stormwater and rubbish in our waterways. Outcomes of this learning activity are for students to: understand ...

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Exploring the story of water

Investigate the journey of water through the environment, from the mountains to the sea through an active demonstration. Discover and discuss changes to quality of the water on this journey through the environment? OUTCOMES of this learning activity are for students to: understand the journey of water from taps to the ocean; ...

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Education - Return to 1616 Ecological Restoration Project

This is a comprehensive education package based on of the world's most exciting ecological restoration projects that is happening right now in Western Australia! It features interactive virtual tours, 3D skulls, videos, real-action inquiry projects, research projects, native animal educational card games and activities, ...

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Solar still activity

In this activity students create a solar still and use a predict-observe-explain strategy to investigate how coloured salty water transforms into clear unsalted water. This activity is useful for exploring changes of state (evaporation and condensation) and water cycles.

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Why is water sticky?

In this lesson sequence, students use a range of hands-on activities to explore what water is and how it behaves as it changes from ice to liquid water to water vapour. They explore the structure of water molecules and how these molecules behave when water is heated and cooled to help them to understand how the water cycle works.

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Water is special

In this lesson sequence, students explore what water is and how it behaves as it changes from ice to liquid water to water vapour. The purpose of this lesson sequence is to give students a mental picture of water molecules. Learning about how these molecules behave when water is heated and cooled can help them to understand ...

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Visualising water quality

This lesson sequence provides a rich opportunity to discuss sustainable water management issues, particularly those related to a local catchment. Students gather and map data which allows them to answer questions and add simple environmental data such as water quality parameters to maps using Google Maps.

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No water today – with a puppet

In this lesson, students consider what would happen if there was no water. They explore how our actions can either waste water or save water.

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Wonder of water

The unit has been written to develop students' understanding of the importance of water as a resource and to promote its wise usage. If possible, organise to implement this unit in a term in which you are likely to receive rain.

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How much rain?

In this lesson sequence, students participate in a puzzle hunt in the school grounds to find letter clues that lead to the location of a special gift (a rain gauge) related to water. Students then make rain gauges and record rainfall in the school grounds with both the hand-made and commercial rain gauges.

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Dripping tap investigation

In this activity, students measure how much water is wasted from a leaking tap.

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How is water used?

In this lesson, students investigate the variety of ways water is used by plants and humans in four workstation activities.

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What can water do?

In this lesson, students participate in four tasks to develop an understanding of the properties of water, specifically how water changes when warmed or cooled.

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Every drop counts, being water wise!

This activity aims to explore water usage and water saving ideas. Every drop counts! OUTCOMES are for children to: understand the importance of water; look at ways to help save water; and undertake a water audit.

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Waterways: clean-up

We all have the power to help keep our coastlines, rivers, lakes, swamps, creeks, floodplains, billabongs and estuaries clean by diverting rubbish from our waterways. This can be done with regular clean-ups, picking up litter when you see it, and changing our behaviour such as limiting our use of single-use plastic. This ...