F-10 Curriculum (V8)
F-10 Curriculum (V9)
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Learn how to make interactive webpages and build a surprisingly addictive game! In this DT Challenge, you'll learn the web technologies that form the foundations of the internet. In this course you'll learn the basics of HTML, CSS and JavaScript! You'll build webpages using text and images, and learn how to make them interactive ...
This lesson provides an introduction and overview to learning HTML and CSS. It provides guidance and tips to help students to create and design their own website.
This is the second in a series of lessons to incorporate graphical user interfaces (GUIs) into your general-purpose programming. The series follows on from the Visual To Text Coding lesson series.
This is the first in a series of lessons to incorporate Graphical User Interfaces (GUIs) into your General Purpose Programming. It follows on from the Visual To Text Coding lesson series.
Incorporating 11 tutorial videos and two informative lecture videos, this learning sequence explores natural language processing, a significant application of artificial intelligence. Teachers and students are led through the coding in Python of a chatbot, a conversational program capable of responding in varied ways to ...
This is the fourth in a series of lessons to incorporate graphical user interfaces (GUIs) into your general-purpose programming. The series follows on from the Visual to text coding lesson series.
This is the final project in a series of lessons to incorporate Graphical User Interfaces (GUIs) into your General Purpose Programming. The series follows on from the Visual To Text Coding lesson series.
This is the fifth in a series of lessons to incorporate Graphical User Interfaces (GUIs) into your General Purpose Programming. The series follows on from the Visual To Text Coding lesson series.
In this lesson sequence students create a website that acts as a showcase for a portfolio of their digital work. They learn about flexible design and how to design a site that can be viewed on a browser using any size of screen.
This document presents the milestones in Mossman State School's participation in the Digital Technologies in Focus project.
Alyangula Area School is a government school located in Alyangula on Groote Eylandt, in the Northern Territory on the Traditional Lands of the Anindilyakwa People. Martin Levins is one of ACARA’s curriculum officers who works directly with the school to support the implementation of the Australian Curriculum: Digital Technologies. ...
This PDF outlines Bethany Christian School's proposal to participate in the Digital Technologies in Focus project.
This PDF provides instructions for students to create an interactive poster using a Makey Makey and the visual programming language Scratch. A Makey Makey is an electronic circuit board, which, when connected to a computer, allows everyday objects to function as keyboards.
This PDF provides a list of books that are useful for exploring key concepts and ideas in Digital Technologies.
Mossman State School is a government school located in Mossman, Queensland, on the Traditional Lands of the Kuku Yalanji Peoples. Beth Claydon is the curriculum officer who works directly with the school to support the implementation of the Australian Curriculum: Digital Technologies. Teachers at the school have chosen ...
This report provides details of Bethany Christian School's participation in the Digital Technologies in Focus project, including a Research question, criteria for success, data collection, resources, challenges, milestones and next steps.
This PDF outlines South Kalgoorlie Primary School's proposal to participate in the Digital Technologies in Focus project.
This document includes ideas for planning and developing action research projects to facilitate implementation of digital technologies.
This newsletter from the Digital Technologies in Focus project includes information about schools' projects, workshops, computational thinking, the Australian Curriculum, and useful resources.
This set of printable cards provides definitions of six aspects of computational thinking.