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Scratch 2.0 tutorial

This tutorial provides step-by-step instructions to support the learning of Scratch, a visual programming language. The tutorial is designed for educators who would like to learn how to use Scratch.

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General-purpose programming languages

This video takes viewers through the transition from visual programming (block-based environments) to general-purpose programming (text based environments). It guides teachers as they assist students to move from block-based programming used in primary schools to general-purpose programming languages used in secondary schools.

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

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

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Expert webinar video: Dr Karen Joyce: Map my school

Dr Karen Joyce from STEM education provider She Maps discusses geospatial mapping and methods for teaching underpinning concepts to primary, secondary and tertiary students. Her presentation provides opportunities to think about how we might teach digital systems, data collection and interpretation to our students in context.

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Expert webinar video: Jennifer Hemer: Tasmanian Smart Seafood Partnership

Jennifer Hemer from Natural Resource Management Tasmania explains what's happening in the seafood industry in her state and how digital technologies are used to make the industry more sustainable.

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Digital Technolodgies in Focus: external evaluation - findings on a page

This PDF is a one-page summary of the key findings of an external evalation of the Digital Technologies in Focus project in Australia’s most disadvantaged schools.

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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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Industrial design challenge – separating materials lesson

is lesson provides a great introduction to the idea of separating mixtures and enables students to consider separation as a process that operates on macroscopic levels. Students also learn about waste management and recycling processes in Australia. The lesson provides students with an opportunity to engage in hands-on ...

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Newsletter – December 2019

This newsletter from the Digital Technologies in Focus project includes information about schools' projects, information for parents and teachers, 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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Newsletter – July 2019

This newsletter from the Digital Technologies in Focus project includes information about an On Country staff development day with Leonara District High School, cybersecurity, 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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Faith Lutheran College – Project proposal

This PDF outlines Faith Lutheran College's proposal to participate in the Digital Technologies in Focus project.

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DTiF Project report

The Leading Curriculum Change Using an Ecosystem Approach: Digital Technologies in focus: Supporting implementation of Digital Technologies evaluation report (June 2021) reports on ACARA’s National Innovation and Science Agenda funded project for the period June 2016 to June 2021. This report is highly relevant to those ...

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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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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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Growing healthy plants using natural pesticides

Plants are vulnerable to pests and diseases. This learning activity is designed for children to: understand how to cultivate healthy plants using organic gardening methods; look to natural ingredients as a solution to ridding plants of unwanted pests and diseases; and know how to make a natural pesticide and evaluate the ...

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Classroom ideas F-10: Aboriginal and Torres Strait Islander connections to Digital Technologies

This resource provides examples of ways Aboriginal and Torres Strait Islander Histories and Cultures can be integrated into Digital Technologies. Examples include 'classification and sorting data' and 'designing solutions'.

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Understanding weeds: life cycle

Weeds compete with native plants in our natural environments, and can dominate both natural ecosystems and areas of agricultural production. This competition limits biodiversity, as well as the economic potential for farmers. This activity will look closely at three different weed forms and children will learn about their ...

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Creating a digital start line and finish line with micro:bits: years 7-8

This PDF provides a sequence of activities in which students create algorithms to measure the time taken for a vehicle to travel from a starting line to a finish line. Students connect micro:bits and laser receiver sensors to measure time, then create programs to undertake the timing using visual and general-purpose programming.