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Food Science was one of the four topics that featured as a separate area of study in the Nuffield Home Economics course for students aged 14–16. The course was designed to help students understand the scientific principles underlying the practical work they would do in...

The Basic Course of Nuffield Home Economics was designed for students aged 11–14. The project was supported by the Nuffield Foundation and devised in collaboration with trial schools and with industrial consultants.

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The Nuffield Foundation began supporting design and technology in 1990 by establishing the Nuffield Design and Technology Project. The project's approach focused on 'combining the intellectual with the practical'. A wide range of curriculum materials were produced that work well in the classroom.

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This project allows students to think positively and creatively about different visions of the future. The activities are designed to celebrate human ingenuity rather than apportion blame or induce guilt. Specifically students are challenged to rethink a sustainable future based on the principles of closed loop...

This project allows students to consider the nature of games and sports in depth. What are the characteristics of games that make them enjoyable to play and watch? How can games be redesigned for different participants and different occasions? How can kit and equipment be designed to improve performance?

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Nuffield 11-14 cross-curricular STEM Projects encourage students to develop the skills to explore questions in depth using science, mathematics and design & technology. The projects are set in authentic STEM contexts which leads to a better understanding of how these disciplines (along with engineering) work...

The Nuffield 13 to 16 project grew out of an investigation set up by the Nuffield Foundation Science Teaching Project in 1974. This was CESIS: Curriculum and Examination Systems in Integrated Science. The main finding was that what teachers needed was a project to help them make the best use of all the resources...

The 10 Further Science ('D') units in the Nuffield 13-16 programme each included enough material for eight double periods. Together they provided for a double-award in science by covering the content of a second Science course when combined with three X units. Schools were expected to cover about two and a half...

The Nuffield Foundation began supporting design and technology in 1990 by establishing the Nuffield Design and Technology Project. The project's approach focused on 'combining the intellectual with the practical'. A wide range of curriculum materials were produced that work well in the classroom. This collection...

In this resource learners will explore why scientists are engaged in research at the bottom of the Antarctic and Arctic Oceans. They will understand the importance of collecting samples of organisms...

This resource provides a set of videos and a practical investigation aimed at supporting working scientifically in the classroom and relating science to real world experiences. In the first video Professor Brian Cox joins a teacher to find out how to set up and run an investigation into the effect of increasing...

Ofsted is the Office for Standards in Education, Children’s Services and Skills. Ofsted reports directly to Parliament and is independent and impartial. They inspect and regulate services that care for children and young people, and those providing education and skills for learners of all ages.

The aim of...

This simulation demonstrates how Ohm's law relates to a simple circuit. The voltage and resistance can be adjusted to see how this affects the current. The sizes of the symbols in the equation change to match the circuit diagram.

This worksheet explores Ohm’s law. It provides students with an overview of the relationship between current, voltage and resistance. It also provides a reminder of how to calculate total resistance when resistors are in parallel or series circuits. The questions have worked examples, examiners top tips and answers...

This Catalyst article looks at metals and alloys which play an important role in construction at the Olympic site, both in sports equipment and in medals. Designers must consider the properties of the materials used to make both sports equipment and buildings. These include strength, density, toughness, ductility...

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