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This guidance is aimed at businesses and other organisations looking to provide support and inspiration for science, technology, engineering and mathematics (STEM) in schools.  It is based on consultation with teachers, further developed through debate between teachers, businesses and learned societies.  Teachers...

With the introduction of the revised National Curriculum programmes of study, one of the Hampshire Leading Mathematics Teachers’ (LMT) core groups decided to focus on activities to promote cross-curricular STEM work in schools.

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Ideal for a Halloween-themed coding lesson! Using sparkles to mirror a candle in a pumpkin – can you make it flicker or only come on once it’s dark?

This cross curricular resource explores the difference that growing pumpkins can make to the lives of people living in flood affected regions in Bangladesh. It includes finding out about Bangladesh and its people and ways to address poverty, investigating the pumpkin lifecycle and seed germination, designing and...

Produced by The Centre for Industry Education Collaboration (CIEC), these materials encourage primary children to use reclaimed materials to make a range of products that include a model person, stacking toy, necklace, model car and powered roundabout.

The skills pupils develop during the activities include...

Ideal for a Halloween-themed coding lesson! Using sparkles to imitate eyes in a portrait – but can be made harder using LDRs or making the lights fade in and out.

A report from the National Curriculum Council (NCC). The change in approach was in turn widely criticised by respondents, and further revisions made by the NCC. While the move towards two Attainment Targets (ATs) and the separation of Information Technology was accepted, there were wide concerns about perceived...

Box 1, the green box of ASE’s SATIS 8-14 project, contain ten booklets with resources suggesting activities for teaching science and technology in years three and four of Key Stage Two. Book 10 included six units all related to renewable sources of energy.

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Box 1, the green box of ASE’s SATIS 8-14 project, contained ten booklets with resources suggesting activities for teaching science and technology in years three and four of Key Stage Two. Book 3 included five units.

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Box 1, the green box of ASE’s SATIS 8-14 project, contained ten booklets with resources suggesting activities for teaching science and technology in years three and four of Key Stage Two. Book 5 included five units.

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Box 1, the green box of ASE’s SATIS 8-14 project, contained ten booklets with resources suggesting activities for teaching science and technology in years three and four of Key Stage Two. Book 6 included five units.

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Box 1, the green box of ASE’s SATIS 8-14 project, contained ten booklets with resources suggesting activities for teaching science and technology in Years Three and Four of Key Stage Two. Book 7 included six units.

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Box 1, the green box of ASE’s SATIS 8-14 project, contained ten booklets with resources suggesting activities for teaching science and technology in years three and four of Key Stage Two. Book 8 included six units.

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Box 1, the green box of ASE’s SATIS 8-14 project, contained ten booklets with resources suggesting activities for teaching science and technology in Years Three and Four of Key Stage Two. Book 9 included six units.

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Box 2, the yellow box of ASE’s SATIS 8-14 project, contained ten booklets with resources suggesting activities for teaching science and technology in years five and six of Key Stage Two as well as in Key Stage Three. Book 1 contained five units. 

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