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The activities in this resource relate to communicable plant diseases, the use of monoclonal antibody diagnostic tests (ELISA), and the use of genome sequencing in identifying plant pathogens. The activities are based around tasks carried out in the ‘real...

In this Science upd8 activity students take on the role of a trainee documentary producer working for an environmental channel. The television programme scenario, ‘Bears in Trouble’, explores how rising temperatures in the Arctic could be endangering the survival of polar bears. Polar bears seem perfectly adapted...

Catherine holds a PhD in Robotics and a BSc Artificial Intelligence and Computer Science. She studied A-levels in Physics, Maths, and Computing with an AS-level in Electronics.

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This resource from the Royal Academy of Engineering describes how the London Engineering Project worked to encourage students to see engineering as a potential career path. All activities used an Engineering Message to contextualise engineering and emphasise its impact on the world around us.

The project...

Protecting Your Head, from the Centre for Science Education, is a set of teaching materials which offer a cross-curricular approach to learning about engineering. The context for the activities is the design of head protection for snowboarders where the risk of injury...

This maths in construction resource explores some common maths that a Quantity Surveyor uses while at work—most commonly to do with calculating areas and assessing the cost of a project. The session includes a group activity where students work together to calculate the costs of paint that would be needed for a...

Published by the Royal Academy of Engineering, this activity looks at using alternative forms of transport, in this case cycling. The activity centres around groups of students developing an engineered product that represents the ideas of personal transport and sustainability. There is also a case study looking at...

This information sheet, from the Royal Academy of Engineering, provides teachers with a challenges to stereotyping activity. Some students may not understand what engineering involves, others may be fully engaged in another subject, while for some engineering may appear too hard or culturally irrelevant. By using...

Produced by the Royal Academy of Engineering, this information sheet is aimed at helping teachers send a positive message across to students who can often feel that engineering has ‘nothing to do with me’. Many students do not realise that engineering is a very broad area. Much of what people buy, own, wear, eat...

The information sheet, from the Royal Academy of Engineering, covers what materials are required and encourages students to think about how a material alters as it is processed and how it can be used. Students are encouraged to think about engineering applications for a material and also the marketing of a product...

This information bulletin, from the Royal Academy of Engineering, is aimed at teachers to help them encourage students into engineering careers. The bulletin provides three case studies about young engineers and also provides a selection of activities to engage students in thinking about engineering concepts and to...

Produced by Rolls-Royce, the associated resources in this toolkit help students to make the connection between STEM subjects studied in school or college and possible future career opportunities. The materials illustrate the really exciting opportunities which open up to them through studying STEM subjects. The...

Designed to raise awareness of a greater range of STEM careers for post-16 students, t...

These resources are designed to inspire students, regardless of their background, and show that engineering and technology are positively beneficial to their present and future lives.

Engineering Engagement Project...

This activity sheet for students will enable them to demonstrate the idea of reinforced materials and conclude which is the best to choose for a specific task, in this case constructing buildings resistant to earthquakes and high winds. The work of a structural engineer is also profiled.

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