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Listed under:  Technologies  >  Information and communication technologies  >  Data processing
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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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DT Challenge - 7/8 Python - Sport Micro:Bit

Use Python to program a micro:bit for sport! Get excited about coding even if you have no experience. You'll use the Python language to write your own programs, and make interactive games and tools to improve your health.

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Anti-bullying AI

Sometimes we write and post things on social media in a hurry. Such posts can hurt people and even make them feel bullied. Wouldn't it be great if an Artificial Intelligence application could check our posts as we write them, and warn us if they were potentially hurtful?

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Home automation programming (yrs 5-6)

Investigate home automation systems, including those powered by artificial intelligence (AI) with speech recognition capability. These suggested activities provide a level of differentiation to cater for students’ range of programming skills. They were developed in collaboration with the Digital Technologies Institute.

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Coding a sentimental chatbot in Python

Incorporating 11 tutorial videos and two informative lecture videos, this learning sequence explores natural language processing, a significant application of artificial intelligence. Teachers and students are led through the coding in Python of a chatbot, a conversational program capable of responding in varied ways to ...

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Everything you always wanted to know…

In this lesson sequence students design, build and evaluate their own database and perform queries and build reports based on that database. Students should have prior experience creating a flat file database.

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Visual to text coding: Lesson 9

This is the ninth 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 explores creating powerful programs for managing and analysing data, by combining the previous skills of using loops and working ...

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Understanding digital systems

This PDF provides suggestions for teaching digital systems in the classroom. The resource includes useful links to websites that provide information about digital systems as well as relevant teaching and learning material.

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Data interpretation: organise data by classifying, grouping and sorting objects

This PDF provides suggestions for organising and classifying discrete items according to different criteria, for example, shape, size, colour and type, and prompts students to identify ways in which school resources have been classified.

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What is a digital system and how do digital systems help us?

This PDF provides suggestions for teaching digital systems to students in years F-2. The resource includes useful links to websites that provide information about digital systems as well as relevant teaching and learning material.

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Digital systems cards

This PDF and accompanying cards provide suggestions for ways in which students can identify and explain digital systems in their environment. Students determine whether digital systems include inputs, outputs, or both, and whether they feature software, hardware or peripheral devices. The resource includes useful links ...

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Planning an action research project to facilitate implementation of Digital Technologies

This PowerPoint presentation includes ideas for planning and developing action research projects to facilitate implementation of digital technologies.

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Board and card games for exploring Digital Technologies concepts

This PDF suggests board and card games that are useful for exploring Digital Technologies key concepts and key ideas.

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Planning an action research project to facilitate implementation of Digital Technologies

This document includes ideas for planning and developing action research projects to facilitate implementation of digital technologies.

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Asunda review: STEM integration

This article explores the benefits of an interdisciplinary STEM program in the quest for providing students with a holistic approach to problem-solving that reflects real-world practice. This is supported by a conceptual framework that comprises four constructs: systems thinking, situation learning theory, constructivism ...

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Australian Curriculum: Digital Technologies key concepts mapping: years 3-4

This PDF uses colour coding to provide a line of sight between key concepts, content descriptions and achievement standards in the Digital Technologies subject in the Australian Curriculum.

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Supporting the Implementation of Digital Technologies in Disadvantaged Schools: Case study of impact, outcomes and sustainability (2020)

This PDF is an extensive report on the success of the Digital Technologies in Focus (DTiF) project, with a focus on supporting the Implementation of Digital Technologies in disadvantaged schools. The evaluation gathered qualitative data to create rich case study accounts of six schools' engagement in the project and its ...

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Newsletter – October 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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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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St James Catholic College – PL ecosystem

This document illustrates the network of people and resources that make up St James Catholic College's Professional Learning ecosystem.