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This resource, from Mathematics for Engineering Exemplars, shows the application of mathematics within the mechanical and electrical engineering power industry. Here students learn how statistical models are used to set alarms which detect changes in vibration above normal values. The alarms highlight that...

This lesson is designed to generate discussion in students regarding the common Lunar conspiracy theories. Through looking at statements, analysing the reliability of the sources, and critically analysing the comments and applying scientific principles, students will come to their own conclusions about whether the...

Based on information and guides provided by the Department of Transport, this Cre8ate maths activity introduces the cost benefits of improving the aerodynamics of the cab section of a truck. Mathematical connections involve using calculators and spreadsheets to work on conversions and percentages in the context of...

These diagnostic questions and response activities (contained in the zip file) support students in being able to:
 
  • Describe the relationships between speed, frequency and wavelength for light waves.
  • Describe the nature of light as a form of electromagnetic radiation....

Very simply, this involves making sparkles flash. The challenge is to work out how long a ‘dot’ and a ‘dash’ are, and to successfully code a message in Morse code.

This resource is based around the subject of nets to protect people from mosquitos which spread malaria. It includes various mathematical, discussion and design based exercises. The maths topics covered include nets, area, angles and scale.

Equipment required for the main challenge includes plastic straws...

From the Technology Enhancement Programme (TEP), these circuits allow students to build a range of devices. Each circuit has a full circuit diagram, component list and explanation of how the circuit works. This section covers a range of circuits that can be used to...

This booklet is part of the ‘Innovations in Practical Work’ series published by the Gatsby Science Enhancement Programme (SEP). Electric motors are ubiquitous in modern life, from transport to production machinery to household appliances. This booklet is aimed at non-...

Produced by the Earth Science Teachers' Association, these resources look at how surfaces are produced by the breaking up of rocks and transport by water. The influence of different rock types on the development of landscapes is also considered.

Aimed at primary level, this activity pack contains a range of different activities based on the theme of motion. The activities cover a mixture of topics including: states of matter, the water cycle, Earth and Space, electricity, forces and irreversible reactions.

Designed for use in class or within a...

These diagnostic questions and response activities (contained in the zip file) support students in being able to:

  • Describe how the seasons change through a year.
  • Describe the movement of the Earth through a year.
  • Describe evidence that shows the Earth moves in a circular orbit...

These diagnostic questions and response activities (contained in the zip file) support students in being able to:

  • Describe the properties of the Moon.
  • Identify the shapes that the Moon can appear to be. 
  • Describe how the shape of the Moon appears to change over time.   
  • ...

A Year 10 module from the Salters’ double award science course. This module develops ideas about forces and motion in the context of road transport. It begins by eliciting some of the ideas students already have. Text activities consider the driving and counter forces...

In this Core Maths task students construct line graphs for time series data, calculate the moving average and interpret the graph, stating conclusions.

Moving Averages: Front sheet
This teacher guidance gives an overview of the task including prior student knowledge, suggested...

In this activity students learn about:

- the type of movement generated using a slider and a lever

- how a slider and lever allow movement

- how to cut and assemble simple mechanisms using card and scissors

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