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Listed under:  Science  >  Scientific inquiry  >  Data collection
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Visualising climate change lesson

In this lesson, students explore different approaches to data representation, with the aim of engaging audiences with scientific data. They explore local temperature and rainfall datasets over time and represent trends in innovative ways. Students learn about different ways to visually represent climate change, looking ...

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Conduct statistical investigations: Year 4 – planning tool

This planning resource for Year 4 is for the topic of Conduct statistical investigations. Students conduct statistical investigations, collecting data through survey responses and other methods. They record and display data using digital tools, interpret the data and communicate the results of their findings.

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Collect, sort and compare data: Year 8 – planning tool

This planning resource for Year 8 is for the topic of Collect, sort and compare data. Students examine different techniques for collecting types of data and begin to consider the challenges of collecting representative data by sampling a population.

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Collect, sort and compare data: Year 9 – planning tool

This planning resource for Year 9 is for the topic of Collect, sort and compare data. Students examine different techniques for collecting types of data and begin to consider the challenges of collecting representative data by sampling a population.

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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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Interpret and compare data displays: Year 3 – planning tool

This planning resource for Year 3 is for the topic of Interpret and compare data displays. Students create and compare different graphical representations. They interpret the data and make generalisations.

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Earth and space – Stage 1

In this lesson sequence, students are introduced to regular atmospheric and astronomical events and their effect on the Earth. Students observe, record data, question, describe and identify the changes that occur in the sky and on the land. The sequence uses a balance of synchronous and asynchronous learning strategies. ...

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Australian Curriculum: Digital Technologies Years F-2 Sample Assessment Task: Digital Systems - Presentation materials

The Digital systems presentation materials to support the assessment task provides a scaffold to teach about and assess students’ understanding of how digital systems can be used to collect data about the school environment. Students are guided to use digital systems such as photo apps on digital devices and online maps ...

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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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Australian Curriculum: Digital Technologies Years 3–4 assessment task: Living and non-living things booklet

This PDF is a booklet that accompanies the years 3-4 assessment task, Classifying living and non-living things.

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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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Australian Curriculum: Digital Technologies Years F–2 Sample assessment task: Stepping out

This resource provides strategies for assessing aspects of the Digital Technologies subject in the Australian Curriculum that relate to data using contexts from other learning areas and General Capabilities, including Mathematics, Numeracy and Literacy. The resource includes an assessment planner and rubric, as well as ...

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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

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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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Conduct statistical investigations: Year 9 – planning tool

This planning resource for Year 9 is for the topic of Conduct statistical investigations. Students plan and conduct a statistical investigation. Encourage students to think creatively to come up with a topic for investigation; prompt students to choose a topic of interest so that they engage in the process and are motivated ...

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Australian Curriculum: Digital Technologies years 3-4 Digital Systems sample assessment task: Cooling the school

This document provides a scaffold to teach and assess students’ understanding of how digital systems can be used to monitor and collect information used for mapping and making judgements about the environment. Students record information using digital systems to investigate a school need, then design solutions to improve ...

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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 ...