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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 3 contained five 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 4 contained five 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 5 contained five 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 6 contained 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 7 contained six units.

...

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 8 contained five 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 9 contained four 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. These units were later grouped into five themes and...

The STFC Lunar Rocks and Meteorites Loan Scheme has been running since the mid 1980s. It has lent the NASA Moon rock discs and meteorites to thousands of schools, museums and outreach organisers. The collection has been produced by the ASE with the University of...

In this activity children are introduced to safe solar observation. Using everyday materials, the activity provides a step by step guide to create a safe sun viewer. A second activity investigates ‘sunspots’ and looks at how to use binoculars as a projector to see 'sunspots'. ‘Sunspots’ are areas of the sun which...

Professor Saiful Islam is a chemist who never wears a white lab coat. Rather than conduct experiments in laboratories, he uses the world's most powerful computers to produce computer models of the inner, 'atomic' structure of materials used in 'green' energy applications, from the lithium ion rechargeable batteries...

Salt water is denser than freshwater. That is why we float so much more easily in the sea than in a lake or a swimming pool. An object will float if it is less dense than the water surrounding it. Therefore, things float easier in salt water as it is denser than freshwater. This is particularly evident in the Dead...

In this activity aimed at ages 9-10, children solve a problem faced by farmers in Mexico – ‘How to grow strong, healthy plants, that can survive and thrive in difficult conditions’. ...

Aimed at primary level, this activity pack contains nine activities about bees. The activities link to the curriculum areas of identifying plants and animals, pollination, lifecycles, food chains and habitats. They include: identifying bees and bee pollinated plants, the factors which affect growth and decline in...

These resources, provided by The AstraZeneca Science Teaching Trust, include materials produced as part of The Cambridgeshire SEN Science Project which brought together a group of special schools and developed a scheme of work and an assessment/recording framework for...

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