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This resource has been developed by the Royal Society of Edinburgh (RSE) and the BCS Academy of Computing. It will seek to consolidate learners’ understanding of modern information systems concepts, through study of web technologies, including HTML.

Whilst this resource has been designed to be used as a...

This cross-curricular computing / ICT activity helps children to understand decomposition. They choose a poem and create an animation using Scratch; this encourages them to think deeply about the poem, and to explore the tools available. Children break the poem into pieces (decomposition), then plan the animation...

This cross curricular activity includes science content from Year Four of the primary curriculum. It introduces programming and control, linked to the outside world through sensors - in this case, the computer's built-in microphone or a peripheral microphone. Programs are written using Scratch (online or offline)...

In this multi-lesson project pupils design and code a computer game. It uses a rainforest theme but can be adapted to any topic, with learners of varying age or ability.

The project includes:

  • Decomposition of the elements of a game
  • Designing the game
  • Creating assets for the...

This Barefoot Computing resource for upper-primary computing lessons uses the creation of a Scratch maths quiz as a basis for learning about algorithms using selection.

Children are asked to create an algorithm that...

This Barefoot Computing resource builds on the ‘Maths quiz with selection’ learning activities which should be undertaken first.

It involves improving an existing Scratch maths quiz and adding score-keeping using...

This collection of twelve Scratch cards is designed to provide a quick way to learn how to code using the language Scratch. The front of the card describes to the students what can be done; the back explains how to do it. Each card can be printed and folded to A5 size for use with students. The activities cover how...

In this Rapid Router activity, children progress from block-based programming to the textual environment of Python. In doing so they learn about the nature of text-based coding, including the need for precise syntax and how it is structured.

The progression is handled gently, with code compared in both...