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Creating an Indigenous plant-use garden: harvesting

The satisfaction of eating straight from the garden is one of life’s best learning experiences, however we need to be respectful and mindful to only harvest what we need to allow the plant to continue to thrive for generations to come. This activity involves the assessment and mapping of local environments to create a successful ...

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Creating an Indigenous plant-use garden: planting

The outcomes of this learning activity are for children to: follow instructions and a planting plan; understand the steps involved in planting out and maintaining a successful Indigenous plant-use garden enjoy being active and productive outdoors and build their social and teamwork skills; physically be involved in the ...

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Creating an Indigenous plant-use garden: vision

Planning for an Indigenous plant-use garden is a good way to develop a connection with and respect for First Nations people's perspectives. Use this learning activity to explore exciting ideas, create goals and understand more about successful Indigenous plant-use garden projects. Outcomes of this learning activity are ...

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Creating an Indigenous plant-use garden: plant list

For thousands of years, First Nations peoples across Australia have been growing and cultivating plants. Plants are grown for many different purposes, including food, tools, medicine, shelter, clothing, hunting, carrying, water craft, ceremony and land management. Everything they needed to survive is provided by the bush. ...

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Meet the food system

This unit of work consists of two parts, supported by lesson plans, slides and handouts and teachers guides. The first part examines the food system as a complex network that is deeply connected to health, society, and the environment. The second part explores key milestones in the history of agriculture, with a focus on ...

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Discovering past methods of food and fibre production

This is a teacher resource containing a sequence of activities for investigating the production of food and fibre in Australia’s past. It contains material to assist planning, implementing and assessing a study of past methods of food and fibre production in Australia including Aboriginal and Torres Strait Island Peoples’ ...

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Beautiful biomes

In this lesson students learn the features of the five main biomes, and use ClassVR headsets and CoSpaces to design and create a virtual biome to explore. They research and identify the features of a biome and then create their own virtual environment. The resource explores the human impacts on biodiversity and explore ...

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Understanding weeds: investigation

In this activity you will be looking for weeds in your local park, backyard and surrounds. Build your knowledge and weed investigation skills as you explore your local environment and examine the presence of weeds. Using online resources, field guides and expert local knowledge, you will be looking at and identifying weeds ...

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Programming people

Play a variation of the game ‘Simon Says’ to develop understanding of sequencing and instructions in programming.

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About me

Order images to show a sequence of personal events or milestones such as birth, first tooth, beginning to crawl.

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Data compression

Students will learn how the information in a pixel can be manipulated to change the image, and apply a bitmask filter to an image to remove some information and reduce the memory size of the file. Finally, students will modify the filter to find a balance between quality and small file size. Based on the original lessons ...

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Coding for GUIs Lesson 2: Controls for input

This is the second in a series of lessons to incorporate graphical user interfaces (GUIs) into your general-purpose programming. The series follows on from the Visual To Text Coding lesson series.

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Note the music

We can program a computer to play music. Conventionally this is done by hard coding, which is the process of coding all possible expected behaviours. Alternatively, we can train an artificial intelligence (AI) computer about what notes go well with others, so it can play a duet with a human musician. Students can make their ...

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Visual to text coding: Lesson 4

This is the fourth in a series of lessons to transition from visual coding to text-based coding with a General Purpose Programming language. This lesson may take two to three 45-minute periods. It introduces the combining of logical operators and and or for more complex decisions.

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Systems Thinking and AI applications

This lesson takes a systems thinking approach to understanding the place of artificial intelligence (AI) as a component within solutions to real world problems, such as predicting bushfire hotspots, spotting and monitoring animals in the wild, automated horticulture and agriculture, and early detection of medical issues.

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Analysis of AI applications, drawing on ethical understandings

This lesson plan explores the ethical aspects of artificial intelligence and the implications on our future lives. This lesson was developed by the Digital Technologies Institute in collaboration with the DT Hub.

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Hot Bots

For this project, students are introduced to the Arduino microcontroller and Arduino integrated development environment for programming a switch on an air conditioner. This lesson was designed by Cindy Thornton, Flinders Island District High School, Tasmania.

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Heads or tails

In this lesson we show how to transition from a visual based programming language to using a text-based programming language using the example of a heads or tails coin toss application.

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Cross age making a robot

This lesson sequence is a cross-age project that can be used for students in year 5/6 in collaboration with students from years 1-2. In this project, students collaborate on a code for an unplugged robot. They design, test and modify the robot and create instruction manuals.

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Spreadsheets come alive

In this lesson sequence use the ‘Odds and evens’ problem as a springboard. Students construct interactive spreadsheets designed to address particular needs. This lesson also demonstrates an approach to programming known as rapid application development (RAD).