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

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

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A–Z Digital Technologies vocabulary F–6

This PDF assists teachers in thinking about when and how to introduce Digital Technologies discipline-specific vocabulary.

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ACARA sample assessment task: years 7-8

This resource provides strategies for assessing students' understanding of the ways in which data can be sourced, organised and represented to maximise options for analysis, evaluation, decomposition and visualisation in order to create digital solutions. The context of the resource is the liveability of the places in which ...

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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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Digital Technologies in the Australian Curriculum: overview and key links

This PDF gives an overview of the Australian Curriculum: Digital Technologies. It includes key points from the rationale and a step-by-step process for becoming familiar with the structure of the curriculum to assist planning. The document also provides links to key documents and sections of the Australian Curriculum as ...

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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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Australian Curriculum: Digital Technologies key concepts mapping: years 7-8

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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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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Game builder

Game Builder is an online resource for teachers and students making their very first videogame, and for those who have some experience already. There’s more to a good game than good code! As with most creative projects, success comes from good ideas and thorough preparation. This resource will take you through the building ...

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Curzon & Bell et al. review: Computational thinking

This article explores the concept of computational thinking within computer science learning and in relation to other learning areas. The authors assert that because of its focus on analysis, computational thinking is not only suitable for computation but also the development of systems-based on computation.

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Volmert et al. review: STEM learning

This report examines the similarities and differences in the understandings about STEM education between experts and the general public in some American states. The authors contend that one of the most interesting findings is the role of Science: the general public equates STEM as Science, whereas the experts view all STEM ...

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Newsletter – July 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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Creating compost

Compost is created when organic materials such as twigs, leaves, dry grass and kitchen food scraps break down. Composting is a great way to reduce the amount of landfill that is produced, and also provides soil full of good nutrients that can be used on the garden. OUTCOMES of this learning activity are for students to: ...

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Get ready to learn! Interoception and self-regulation

Interoception (mindful body awareness) refers to the perception, recognition and understanding of the internal physical states. These body signals can be understood as emotions and/or feelings which can then be responded to. Self-regulation is the ability to moderate or control emotions and actions in order to function ...

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Wildlife crime and the law

This sequence of five lesson ideas focuses on the concept that Australia's biosecurity and environmental wellbeing are enhanced when individuals understand the behaviours, rules and laws associated with being an environmentally responsible citizen. The resource provides students with the opportunity to explore how Australia’s ...

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Focus on China: Cross Curriculum Connections in Secondary Schools

Ideas and resources that connect the learning of Chinese language with other learning areas.

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Creating a yarning circle: using your yarning circle

This activity provides a plan for how to use a yarning circle by introducing a yarning stick/talking stick. It is part of a sequence of 8 individual learning activities designed to support the meaningful use of yarning circles in learning environments. The outcomes of this learning activity are for children to: understand ...

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Creating a yarning circle: connecting to Landcare

This activity is designed to help you make connections with your local Landcare or environmental group and facilitate a partnership with these organisations. It is part of a sequence of 8 individual learning activities designed to support the use of yarning circles. OUTCOMES of this learning activity are for children to: make ...

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When I post something online how permanent is it?

Students engage in a photo rip up activity to emphasize the permanency of online information, they explore factor trees, doubling and line graphs through the lens of sharing information, and they collaboratively develop a set of protocols around sharing information online.

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Mathematical modelling (Number): Year 7 – planning tool

This planning resource for Year 7 is for the topic of Mathematical modelling. Students use knowledge of the other topics in the Number strand, so that applying knowledge and skills can be modelled. This can be done in groups or as a whole class, as well as individually. Collaborative learning works well for practical problems.