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Coding for GUIs Lesson 5: GUIfy my program!

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

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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.

Online

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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Exploring AR Space Rocks

In this lesson, students undertake a research project about “space rocks”. They devise a research question to investigate something they would like to know about space rocks and communicate their ideas within an AR or Virtual Reality (VR) experience.

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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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Turtles: exploring data tracking turtle movements

By gathering data on marine turtles, scientists have evidence that helps them work out where turtles migrate and the journeys they take. Scientists can then help to reduce the threats to the turtles’ survival. In this lesson we look at satellite tracking using real scientific data. Explore ways to model, interpret, represent ...

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DT Challenge - 7/8 Python - Networking with Micro:Bit

Learn how to code the micro:bit to use the radio! In this DT Mini Challenge, you can create wireless networks to send pictures and messages around the room! You'll start by sending simple messages, but work up to making your own interactive games with your friends! Dive on in and you'll be sending secret messages in no time!

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DT Challenge - 7/8 Arduino - Sound

Let's make our own devices with the Arduino! We'll take a deep dive into building devices from the ground up, and you'll see how all pieces of technology are built! Learn how to create a temperature monitor, or a musical instrument, or make an automatic torch! Jump right in and let's make some noise!

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DT Challenge - 7/8 Python - Smart garden

Learn how to program a BBC micro:bit using Python — no experience required. Learn the basics of programming in Python with our full BBC micro:bit simulator. Create a Smart Garden device to monitor the health of your plants, measuring temperature and wiring up a simple soil moisture sensor.

Online

Untold education project: The invisible farmer

Invisible Farmer is the largest ever study of Australian women on the land. The project collects oral histories of women by creating interview-based video content. This website provides videos ,interview questions and suggestions to support teachers to guide students to create their own multimodal stories of women on the land.

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Engineers think outside the square

Students explore the brainstorm and iterate phases of the engineering design process, with a particular emphasis on the importance of trying different ideas to ‘build a better mouse trap’.

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Transportation Though the Ages: Science as a human endeavour

Humans are constantly working to develop and improve our technology and understanding. This resource provides step-by-step instructions to help students consider why innovative design and improvement is important. Students firstly identify as many types of transport they can think of and then discuss why new types of transport ...

Video

Connecting Digital Technologies to food and fibre - Smart gardens 1

This video explores ways in which students can develop and apply their Digital Technologies knowledge, understanding and skills to create a digital solution through the Curriculum connection of food and fibre. The video is designed for educators who would like to learn how to use a BBC micro:bit to manage the water requirements ...

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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.

Video

Supporting implementation of Digital Technologies and the ICT Capability: part 1

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 first in a series of three.

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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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Newsletter – October 2019

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

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St James Catholic College

St James Catholic College is a K–10 school located about 50 kilometres south of Hobart, Tasmania on the Traditional Lands of the Mellukurdee Peoples. Peter Lelong is the curriculum officer who works directly with the school to support the implementation of the Digital Technologies curriculum. Teachers at the school have ...

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Micro:bit missions: Take a chance on me (Integrating Mathematics): years 6-8

This resource comprises two activities that allow students to explore the concept of chance in Mathematics. Students use computational thinking while using a micro:bit as a digital system to generate and collect data. Students implement programs involving branching and iteration in visual and general-purpose programming languages.

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Australian Curriculum: Digital Technologies Years 7–10 achievement standards and aligned content descriptions on a page

This PDF presents content descriptions and achievement standards for the Digital Technologies subject in the Australian Curriculum