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The shock of the new

Using four inventions from 1985, this lesson sequence explores the impact of innovation, supporting circumstances, how individuals contribute to change and the importance of addressing benefits as well as risks in the development of new systems.

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Sphero and the chocolate factory

This activity allows students to use the visual programming software Lightning Lab to control Sphero to act out the role of a fictional character. This activity uses Charlie and the Chocolate Factory by Roald Dahl as an example. This lesson idea was created by Steven Payne.

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Rock, Paper, Scissors AI!

In this lesson we use the game rock, paper scissors to investigate how an AI can recognise your hand gestures. Firstly students create, train and test their own AI model. They import their AI model into a pre-made JavaScript program to modify the computer program to incorporate game play. The level of game play will depend ...

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Visual to text coding: Lesson 5

This is the fifth 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 how to create and use arrays (also called lists).

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Visual to text coding: Lesson 1

This is the first 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 how to create variables, get user input and perform maths operations.

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Creating a Space AR poster using Unity

In this lesson, students explore how to design and implement a simple Augmented Reality (AR) poster experience using Unity 3D and Vuforia SDK for Unity 3D. This lesson is within the context of a Space-themed example, however, it could be used for other contexts such as Biology, Geography, Art or more.

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Design Thinking Process - Empathising

In this lesson students understand design thinking as a process for solving problems creatively. Students explore the design thinking process of empathising and seek to understand more about the users and the problem they are trying to solve. This particular lesson explores reducing litter through the design brief although ...

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Filter bubbles, bias, rabbit holes and nudging

This lesson focuses on the AI systems that recommend content in various applications that students use on a day-to-day basis. It draws on students’ ethical understandings during analysis of these systems. This lesson was developed by the Digital Technologies Institute in collaboration with the Digital Technologies Hub.

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Can an AI recognise what you are drawing

This lesson provides an opportunity to incorporate representation of data using a relevant context being studied in the classroom. Students represent an object using a line drawing, focusing on the features of the object that enable it to be easily recognised. Students experiment with creating representations using an AI ...

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AI ethics - What's possible, probable and preferred?

The development and ubiquity of Artificial Intelligence raise a number of social and ethical matters that students can explore in the Digital Technologies classroom. This lesson idea outlines a project to help students frame such discussions using the curriculum Key Idea of Creating preferred futures, tying into Critical ...

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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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Design a flag with Pencil Code

Design your own Australian flag by firstly examining common elements of flags, creating a step by step process (algorithm) to program your design after exploring a ‘block-based’ turtle drawing program such as Pencil Code.

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Recognising AI

Use the tasks in this lesson to introduce concepts that underpin artificial intelligence (AI). The majority of the tasks are unplugged (do not require a digital device). Use the downloadable AI cards with your students to explore what they know about AI.

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Visual to text coding: Index page

This lesson sequence provides a bridge between visual coding (eg. Scratch) and General Purpose Programming languages (eg. Python or JavaScript). This resource is most suitable if you have never done General Purpose Programming and/or you benefit from slow-paced, step-by-step video tutorials.

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What's the buzz?

In this lesson students use BeeBots and Scratch Junior to synthesize what they know about Bees and are introduced to mapping concepts. This lesson idea was created by Karen Butler.

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Future proofing data

This lesson sequence aims to identify strengths and weaknesses of past, present and future methods of data storage and recognise the risks and benefits for users. Students explore specific “data dilemmas”.

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Behaving with real class - Using a text-based language

This lesson sequence offers an approaches to teaching object-oriented principles using text-based programming. It attempts to address the problem that many of programming languages are too complex and their environments confusing for many students.

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Teaching consumer and financial literacy

This web page offers teachers a variety of resources to help them plan for embedding financial literacy topics across the curriculum. The page covers how to gauge students' financial literacy, how to plan to include financial literacy in meaningful ways and many other resources and support.

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Paying It Forward Years F-2

This resource is a cross-curricular unit about choice, values and saving or spending money based on needs and wants. The unit develops understanding of Australian money including notes and coins, recognising that money can be saved to meet needs and wants, and how money is exchanged in return for goods and services. The ...

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Position and location: Year 7 – planning tool

This planning resource for Year 7 is for the topic of Position and location. Students demonstrate understanding of objects in two dimensions (2D). Students can draw various shapes in different ways, such as drawing informally on blank paper, on grid paper, or in an isometric representation; discuss the reasons behind the ...