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Listed under:  Technologies  >  Information and communication technologies  >  Data processing  >  Algorithms
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DT Challenge - 3/4 Blockly - Wombot

Wombot is hungry and wants a carrot! With simple code, help Wombot through mazes, and learn to draw lines and shapes with code. In this challenge you'll learn the fundamentals of programming by using instructions to position Wombot on the screen. You'll help Wombot move and turn, and along the way learn to draw lines, patterns ...

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Algorithms for First Nations Australian games

In this lesson, we explore algorithms and how they can be used to provide instructions to play a First Nations Australian instructive game. We also learn about aspects of First Nations cultures.

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Algorithms: Ngarrindjeri weaving

In this lesson, students will practise breaking down a process into smaller parts or steps as an introduction to computational thinking.

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DT Challenge - 3/4 Blockly - Micro:Bit Blast Off

Prepare for launch with the micro:bit! Set your sights on the stars by making a rocket ship, complete with countdown. You don't need a real micro:bit to participate. Use our full micro:bit simulator to learn, explore what the micro:bit can do! Blast-off in 3, 2, 1! If you have a micro:bit you can use our resources to build ...

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Space Race Game (Introducing Algorithmic Thinking) - Calculate

Space Race is a simple board game that teachers can use to introduce the concept of algorithmic sequencing to students. The teaching points provided with the game assist teachers to introduce the use of an algorithm (a simple set of mathematical instructions) to describe the trajectory of an object across a grid plane from ...

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Computational thinking poster

This infographic provides an overview overview of the concepts related to computational thinking.

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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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Classroom ideas: Choose your own adventure: years 3-6

This PDF provides a sequence of activities that allow students to view and create planning templates and algorithms when making 'Choose Your Own Adventure' stories. Older students can use the visual programming language Scratch to build their stories.

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Australian Curriculum: Digital Technologies key concepts mapping: years 3-4

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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Visual programming with Scratch: years 3-6

This comprises a collection of sample activities that incorporate visual programming (Scratch) into teaching and learning programs. They show the possibilities Scratch offers for integration. The projects are incomplete and are designed to be used as samples for inspiration or modification by teachers.

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Collecting data about litter in the community: years 3-4

This PDF provides activities for collecting, analysing and representing data about litter in the local community. It prompts students to consider the implications of rubbish in the local environment, and suggests actions students can take in order to reduce litter.

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Robots, data and computational thinking: years 2-4

This PDF comprises four worksheets that allow students to observe, investigate, manipulate and program simple line-following robots (Ozobots), engaging in the computational thinking process while working with data.

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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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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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Water Water everywhere!

In this lesson, students are presented with the challenging problem of measuring a volume of water using containers that are not the exact measurement size. Students will decompose a complex problem into discrete steps, design an algorithm for solving the problem, and evaluate solution efficiencies and optimization in a ...

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Bee Bot Balloon Pop

During this lesson, students will be required to consider the functions of the Bee-Bot and how a user can interact with this device. Students are asked to design a course challenge for another user which will result in the Bee-Bot, with a pin attached, reversing into a balloon to pop it. This lesson idea was created by ...

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Automated soil moisture sensor

The soil moisture sensor project integrates science understandings and computational thinking to solve a problem about sustainable watering practices. This lesson was devised by Trudy Ward, Clarendon Vale Primary School, Tasmania.

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Ciphering a sentence

A cipher is a message that has been written in such a way (encoded) that it is unreadable by others. In this lesson, students will use mapping to encode a sentence. Students will work with a partner to create an algorithm that describes the encryption process. They will also examine encoded and decoded messages to recognize ...

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Australian Curriculum: Digital Technologies Years F-6 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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Kim review: Systems thinking

This article explores the types of systems in our world, their characteristics and how our behaviour can initiate and respond to changes in their performance. The author differentiates between systems thinking and a system and elaborates on those factors that contribute to systemic behaviour.