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Video

Supporting implementation of Digital Technologies and the ICT Capability: part 3

This video explains ways in which the Digital Technologies curriculum and the Information and Communication Technology (ICT) General Capability can be implemented in schools. This video is the last in a series of three.

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Newsletter – June 2021

This newsletter from the Digital Technologies in Focus project includes information about schools' projects, assessment tasks, artifical intelligence (AI), the Australian Curriculum, useful links, and resources.

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Newsletter – April 2020

This newsletter from the Digital Technologies in Focus project includes information about schools' projects, workshops, computational thinking, the Australian Curriculum, and useful resources.

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Newsletter – April 2018

This newsletter from the Digital Technologies in Focus project includes information about schools' projects, the Australian Curriculum and useful resources.

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Faith Lutheran College – Timeline

This document presents the milestones in Faith Lutheran College's participation in the Digital Technologies in Focus project.

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St James Catholic College – Project proposal

This PDF outlines St James Catholic College's proposal to participate in the Digital Technologies in Focus project.

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Miller & Boix-Mansilla review: Thinking across perspectives and disciplines

This article explores the challenges associated with using knowledge from different domains (and people) to work on a common problem, issue or puzzle. It acknowledges that the differences in how disciplines structure their knowledge raise challenges when working across disciplinary boundaries. The article identifies these ...

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Australian Curriculum: Digital Technologies Years 7-8 Sample Assessment Task: Digital Systems

The Years 7-8 assessment task focuses on digital systems (integrating Digital Technologies and Science). The digital systems assessment task provides a scaffold to teach about and assess students’ understanding of how digital systems can be used to monitor the classroom learning environment. learn how to create environmental ...

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Food innovation and molecular gastronomy 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 ...

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Create dichotomous keys lesson

In this lesson students engage in a hands-on exploration of local diversity. Students research and record local wildlife, learn about biodiversity in Australia, and conduct a ‘bush blitz’. They learn how to create dichotomous keys and translate their keys into a wildlife discovery app prototype. The resource includes links ...

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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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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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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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Creating a food garden: site assessment and mapping

This learning activity is part of a sequence of 5 individual learning activities focused on creating a food garden. The order of these learning activities are: vision, site assessment, installing a no dig garden bed, planting and harvesting. OUTCOMES of the learning activity are for children to understand more about the ...

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Growing your own pizza

In this hypothetical exercise, young learners will explore what they would need to establish if they were to grow their very own pizza. The OUTCOMES of this learning activity are for children to: investigate where and how food is produced; appreciate the complexities of food manufacturing; expand their knowledge of food ...

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Creating a beneficial garden: planting

Planting flowers with food crops increases biodiversity, and is known as beneficial planting. Beneficial planting not only makes our garden beds look more attractive to us, it also makes gardens look more attractive to pollinators and predators, which in turn, help to fertilise and protect crops from pest invertebrates. ...

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Coding for GUIs Lesson 1: Structure, style and function

This is the first in a series of lessons to incorporate Graphical User Interfaces (GUIs) into your General Purpose Programming. It follows on from the Visual To Text Coding lesson series.

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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: 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.

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Data bias in AI

Artificial intelligence can sometimes be biased to certain shapes or colours. When such AI systems are applied to situations that involve people, then this bias can manifest itself as bias against skin colour or gender. This lesson explores bias in AI, where it comes from and what can be done to prevent it.