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This Core Maths activity allows students to explore the difference between linear and exponential sequences and their sums.

The SMILE resources on which the lesson is based can be found here. Details of prior student knowledge, suggested approaches...

This activity aimed at primary learners, looks at the properties and uses of materials and what humans need to stay alive. It introduces Ricky who is going on an expedition to Antarctica and asks children to decide what he needs to take with him. By making comparisons, sorting and grouping objects and using their...

This activity from Cre8ate maths looks at the exciting mathematics connected with the regeneration going on in our cities. The three activities are based around the construction of rigid structures and provide opportunities for practical work and mathematical problem...

This resource, from Siemens, looks at the function of a wheel bearing on trains and the importance of finding out whether replacement is needed. Students consider the cost implications of replacing bearings before it is necessary and the cost and safety implications of not replacing them in time. Traditionally,...

These three activities, from Centre of the Cell, introduce the idea that there are certain factors, called risk factors, which can increase a person’s likelihood of developing a disease. Students learn how scientists use research to determine what the risk factors are for various diseases.

Using data...

This RISP activity, The answer's 1: what's the question?, gives students graphs containing shaded areas enclosed by two functions. Examples of a straight line and a quadratic graph, a cubic graph and an exponential graph are used. Given that the enclosed area has a value of one, students are asked...

Two Repeats covers the revision of algebraic topics including changing the subject of a formula, graphical solution of equations, solving simultaneous and quadratic equations and manipulating surds.

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Two RISP activities designed for students to explore or consolidate ideas about integration.

Introducing e requires students to use a graphing package to explore a variety of functions of the form y...

Together with related activities from the Institution of Engineering and Technology (IET), this resource allows students to investigate the wide range of sophisticated imaging technology available in modern hospitals, and to explore the latest ideas in search-and-rescue...

This resource provides a set of videos of a practical investigation aimed at supporting working scientifically in the classroom and relating science to real world experiences, presented by Professor Brian Cox and Dame Maggie Aderin-Pocock. In this video, Maggie joins a teacher demonstrating a robotics-based...

NASA’s Mars exploration rovers Spirit and Opportunity were sent to the planet to investigate its geology. Accurate images of the surface were needed so that possible areas to investigate could be selected and then the rover directed towards them. The cameras on board the rovers can only record black and white...

This resource supports students to research and discuss the field of robotics and artificial intelligence (AI). The resource provides a series of student tasks that explore the topic of whether robots are a threat to humanity. This resource would work well as a research topic for students undertaking projects in...

From NASA, these activities look at the scientific, technological, engineering and mathematical foundations of rocketry to provide exciting classroom opportunities for authentic hands-on experimentation. Rockets have formed the basis of space exploration.

Extensive teachers' notes, guidance and lesson plans...

This resource, from the Association for Science Education (ASE) introduces students to the science and technology of rocket flight.Liftoff! has been developed by the Department of Physics at the University of Surrey, with the support of PPARC and is designed primarily for students aged 11-13. It is an exciting...

Work done in this Nuffield 13 - 16 module followed from the B unit called ‘Machines and engines’ and the S unit called ‘Fuels’. This S unit provided enough material for eight double periods during a single-certificate science course. The teachers’ guide included seven worksheets to supplement the students’ booklet...

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