Search results

Text

Digital Technologies resource types and resource mapping template

This three-page document gives suggestions for selecting and organising Digital Technologies resources, including physical equipment, unplugged activities and online links. It includes a simple template that may be helpful in documenting these.

Online

Creating a yarning circle: yarning circle activities

Yarning circles provide opportunities for all to be heard, for discussions to be had and for understandings to be reached. This learning activity provides activity ideas for use in a yarning circle and will support students to develop a calendar for the yarning circle; be empowered to utilise the space regularly and meaningfully; ...

Video

An introduction to artificial intelligence and machine learning

This video is the first of a series of 5 explainers on artificial intelligence. It discusses why it is a challenge for a computer to easily recognise one object from another. Discover how a machine learns using labelled images rather than following a specific set of rules and how AI connects with human learning.

Text

Focus on Indonesia: Cross Curriculum Connections in Primary Schools

Ideas and resources that connect the learning of Indonesian language with other learning areas.

Online

AI and image recognition

This lesson builds on How can an AI recognise what is sees? It focuses on image recognition that involves feature extraction, object detection and classification, and introduces the idea that computers store and use data using 0s and 1s.

Online

Visual to text coding: Lesson 10

This is the tenth 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 coding concept of functions. Functions can help organise code, reduce repetition and more to be explored later.

Online

Visual to text coding: Setting Up

This series of lessons is to help students to transition from visual coding to text-based coding with a general-purpose programming language. This section provides guidance on how to set-up the particular programming environment including Scratch, Python and JavaScript.

Online

Creating a yarning circle: yarning and wellbeing

This learning activity will help you make connections between yarning and wellbeing programs, and how you can use yarning circles to support respectful, honest and open communication to promote connectedness among students, particularly using the morning circle routine. It is part of a sequence of 8 individual learning ...

Online

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.

Online

Scratch Creative Computing Guide

There is also a series of units comprising learning activities, paired with assessment activities and templates that can be used to support use of the Scratch (MIT) platform. The Scratch Creative Computing Guide supports assessment activities with visual programming environments.

Video

Decimal fractions video

Use this video to explore decimal fractions, how they are represented and how we use them in day-to-day contexts.

Online

Visual to text coding: Lesson 8

This is the eighth 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 brings together skills from the previous lessons to design and develop a Higher Lower game, where the player tries to guess ...

Online

Ciphering a sentence

A cipher is a message that has been written in such a way (encoded) that it is unreadable by others. In this lesson, students will use mapping to encode a sentence. Students will work with a partner to create an algorithm that describes the encryption process. They will also examine encoded and decoded messages to recognize ...

Online

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.

Online

Home automation with AI

Home automation is all the rage. You talk to your mobile phone to control the lights, the fan, the air conditioner, or your pool pump. But how does it work? In this lesson, we explore the AI that could power a home automation system.

Online

Creating a wildlife habitat: research

This learning activity is the first part of a sequence of 5 individual learning activities focused on creating a wildlife habitat. The order of these learning activities are: research, vision, design, planting and monitoring and care. The OUTCOMES are for children to: undertake research to determine what their local ecosystems ...

Online

Local seasons: exploring First Nations weather knowledge

First Nations peoples across Australia have a detailed understanding of their environment, passing it down from generation to generation. They observe their environment closely, and use this knowledge to understand the changes in plants, animals and climate. Changes in the environment indicates what to eat, when to eat ...

Online

Creating a sensory garden

A sensory garden is a garden that engages all the senses: touch, smell, hearing, sight and even taste. Sensory gardens create a rich sensory experience as users directly and indirectly interact with the plants and the space. In addition to providing tips for creating a sensory garden and the best types of plants to choose, ...

Online

Project Quantum: Online assessment system

Project Quantum helps computing teachers check their students’ understanding, and support their progress, by providing free access to an online multiple-choice assessment system and question bank. To use Project Quantum, you will need to create a free account.

Online

Describing an everyday object

In this lesson, students act like the inventor of an everyday object that does not yet exist. Students abstract the essential details, and describe what need would be fulfilled by the new object and how, specifically, it functions. They will then translate the description into a format appropriate for modeling the object ...