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CLIL: What works

Strategies to support Languages teachers to implement the CLIL approach at secondary level

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Computational thinking in the Australian Curriculum: Digital Technologies

This video provides an overview of computational thinking and how it can be taught in the context of other learning areas.

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Digital Technologies teacher self-assessment matrix

These matrices allow teachers to self-assess their proficiency with Digital Technologies. They include a notes section for teachers to plan future professional learning.

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Effective DTiF strategies

This PDF lists eight ways in which Digital Technologies in Focus (DTiF) supported the implementation of Digital Technologies in disadvantaged schools.

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Computational thinking cut out cards

This set of printable cards provides definitions of six aspects of computational thinking.

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Digital Technologies in the Australian Curriculum: sequence of content

This PDF provides a sequence of content for the Digital Technologies subject in the Australian Curriculum

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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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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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Creating a food garden: vision

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 For children to: • appreciate what they would like to achieve from creating ...

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Creating a food garden: planting

Planting a food garden is an exciting and fulfilling task. 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 this activity ...

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Creating a food garden: harvesting

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 activity are for children to: understand the steps in successful ...

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Investigating the soil food web

Soil is much more than just dirt. In this activity, learners will be conducting an investigation to see which animals and other organisms are recycling nutrients in the garden. These organisms make up the soil food web, which includes microscopic bacteria, fungi, minute creatures such as springtails, worms, pill-bugs and ...

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Creating a beneficial garden: assessment

Invertebrates perform many different roles in a garden’s ecosystem and occupy many different habitats. In this activity, you will be completing an assessment of these animals. The aim of this activity is for children to identify invertebrates, appreciate different invertebrate habitats and understand the roles that these ...

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Creating a bee hotel: research

Explore the different types of bees common to Australia, their features including how they are different to flies and wasps. We will focus on native bees, specifically to learn about their nesting habitat. This learning activity is the first part of a sequence of 2 individual learning activities focused on creating a bee ...

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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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Expert webinar video: Professor Tim Bell – Computational thinking

In this video, Professor Tim Bell discusses helpful ways of understanding and teaching computational thinking, a key idea of the Australian Curriculum: Technologies.

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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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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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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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Waterways: clean-up

We all have the power to help keep our coastlines, rivers, lakes, swamps, creeks, floodplains, billabongs and estuaries clean by diverting rubbish from our waterways. This can be done with regular clean-ups, picking up litter when you see it, and changing our behaviour such as limiting our use of single-use plastic. This ...