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In this Rapid Router activity, children progress from block-based programming to the textual environment of Python. In doing so they learn about the nature of text-based coding, including the need for precise syntax and how it is structured.

The progression is handled gently, with code compared in both...

This game teaches students the main principles of sexual selection and the difference between intrasexual and intersexual selection. Students discover why some animals have ornaments to attract mates (intersexual selection) while others have weapons to fight for mates (intrasexual selection).

Please note...

In this practical lesson from the Institute of Engineering and Technology (IET), students complete a number of different tests on a selection of materials and identify each one from its particular properties. The tests include Eureka cans, electrical circuits and other...

This activity, from the Institution of Engineering and Technology (IET), introduces students to how sensors can be used in smart applications of electronic systems.

The resource is designed so that students will know...

In this activity from the Institution of Engineering and Technology, students investigate the properties of different categories of smart materials and decide which kinds of materials might offer the best prospects for a financial investment. Students work in teams and...

Receptors under our skin send signals to our brains about the world around us. Engineers are borrowing this idea from the human body to create a ‘smart skin’ for aircraft. In this activity students learn about motes, the tiny sensors at the heart of this innovation, and how science and mathematics are central to...

The focus of this activity is on the principle of hydrodynamics through testing boat hull designs in a test tank.

This activity gives students the opportunity to explore and develop their critical thinking and decision making skills through a practical approach....

This Practical Action resource presents a fun hands-on and brains-on challenge for Key Stages Two to Five.

The problem:...

This is one of a suite of continuing professional development (CPD) units from the Department of Education covering the five ‘key ideas’ at Key Stage Three (cells, interdependence, particles, forces and energy). It links with the...

This is one of a suite of continuing professional development (CPD) units from the Department of Education covering the five ‘key ideas’ at Key Stage Three (cells, interdependence, particles, forces and energy). It links with the...

This is one of a suite of continuing professional development (CPD) units from the Department for Education covering the five ‘key ideas’ at Key Stage Three (cells, interdependence, particles, forces and energy). It links with the 2002 Framework for Teaching Science:...

This is a complementary unit from the Department for Education to a suite of continuing professional development (CPD) units covering the five ‘key ideas’ at Key Stage Three (cells, interdependence, particles, forces and energy).

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This is one of a suite of CPD units from the Department for Education covering the five ‘key ideas’ at Key Stage Three (cells, interdependence, particles, forces and energy). It links with the ...

This is one of a suite of continuing professional development (CPD) units from the Department for Education covering the five ‘key ideas’ at Key Stage Three (cells, interdependence, particles, forces and energy). It links with the 2002 Framework for Teaching Science:...

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