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Voskoglou & Buckley review: Problem solving and computational thinking

This article explores the relationship between computational and critical thinking as it applies to solving technological problems. Research evidence derived from classroom experiments strongly suggests that using computers to solve problems enhances students’ abilities in solving real-world problems involving mathematical ...

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DTiF Classroom Exploring AI in the Classroom: Activity

Simon Collier, Digital Technologies in Focus Curriculum Officer, takes viewers though a lesson from the Digital Technologies Hub exploring how machine learning can be used to organise photographs.

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Expert webinar video: Dr Michelle Ellis: Learning resources for using micro:bits

Dr Michelle Ellis gives a demonstration of the Edith Cowan University Makerspace visual and general-purpose programming environment. She also shows a range of materials to support the implementation of the Australian Curriculum: Digital Technologies. This includes teaching resources and lesson plans.

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Expert webinar video: In conversation with Paul Mead from She Maps: A wide-ranging discussion from women in Technology and unconscious bias to digital systems and the ethical and safety considerations of using drone technologies

Paul Mead, from STEM education provider She Maps, discusses unconscious bias in young students and how She Maps is spreading the word about women who work with technologies in the field. He discusses digital systems and explains how geospatial systems and geographical information systems are used to collect, analyse and ...

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Supporting implementation of Digital Technologies and the ICT Capability: part 2

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 second in a series of three.

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Newsletter – December 2020

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

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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 – December 2017

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

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Newsletter – April 2019

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

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School stories

This webpage provides users with a menu of schools whose experiences with Digital Technologies are described in detail.

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St James Catholic College – Timeline

This document presents the milestones in St James Catholic College's participation in the Digital Technologies in Focus project.

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Australian Curriculum: Digital Technologies Years 9-10 Sample Assessment Task: Digital Systems - Activity Guide

The Years 9-10 assessment task focuses on digital systems (integrating Digital Technologies and Science). The digital systems activity guide provides a scaffold to teach about and assess students’ understanding of how digital systems can be used to monitor the school environment. Students learn how to create environmental ...

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Professional learning workshops

This webpage provides details of ten workshops that focus on understanding and implementing the Australian Curriculum: Digital Technologies. The workshops are provided for Digital Technologies in Focus project schools and, where possible, schools not involved in the 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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Book analysis with AI techniques

This learning sequence explores text analysis through Natural Language Processing, a significant application of Artificial Intelligence. Teachers and students are led through a series of video tutorials to develop a Python program that can break down and analyse the content of a complete text and use smart sentiment analysis ...

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Seeing the wood for the trees

In this lesson sequence students summarise data using advanced filtering and grouping techniques, for example pivot tables in spreadsheets and aggregation functions in databases.

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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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Soil – more than just dirt!

Explore different soil textures and discover their various properties. Through simple soil testing, children will learn to appreciate the true value soils have in helping plants grow. The learning outcomes of this activity are for children to: - understand how soil texture influences the amount of water and air it holds - ...

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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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Fibonacci served three ways

In this lesson sequence students learn to code separate modules that perform discrete functions but collectively meet the needs of the solution. They select the most appropriate algorithm based on the type of problem.