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Online labs provide students with the possibility to conduct scientific experiments in an online environment. Remotely-operated labs (remote labs) offer an opportunity to experiment with real equipment from remote locations. Virtual labs simulate the scientific equipment. Data sets present data from already performed lab experiments. Please use the filters on the right to find appropriate online labs for your class.

Please note that the Go-Lab Authoring Platform Graasp is no longer maintained. This means that it is not possible to create and publish new Go-Lab Inquiry Learning Spaces using the labs listed on this page. However, you can still access the labs and use them directly on the providers' websites with help of the preview links, which you will find on the dedicated lab pages. If you are interested in creating and using Inquiry Learning Spaces in your classroom, please visit the new Authoring Platform Graasp.org

If you are looking for online labs selected for the curricula of Benin, Kenya or Nigeria, please visit our Collections page.

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Additive color mixing shows how different colors of light combine to make another color. This is how computer monitors and color TVs make their colors.

Rating: 4.5 - 2 votes

Make a whole rainbow by mixing red, green, and blue light. Change the wavelength of a monochromatic beam or filter white light. View the light as a solid beam, or see the individual photons.Aims of the lab:

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In Newton's rings, a curved watch glass sits on top of a flat piece of glass. A thin film of air is in between the two - the thin film has a thickness that is zero where the two pieces of glass touch, and gradually increases as you move away from that point.

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In this lab, you can explore the diffraction of waves by a single slit. The width of the opening is controlled by the slider. Initially, the waves are shown in black and white (grayscale), with both the peaks and troughs being white. Black indicates a zero amplitude.

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In this lab, you can explore refraction through 3 media. The light is emitted by the red dot, which is in the air. The light enters medium 2, and then continues on to medium 3. Before adjusting either slider, make two predictions.

Rating: 5 - 1 votes

This simulation allows students to study the reflection of a parabolic mirror. Students have the ability to change the location of the mirror and the source, the focal length and number of rays can also be adjusted.

Rating: 4 - 1 votes

This lab is designed to have students investigate the changes that occur to images formed by converging lenses based on the focal length of the lens, the height of the object and the location of the object.  

Rating: 4 - 1 votes

In this lab, you can explore the phenomenon of total internal reflection (such as an in a optic fibre). The light source is the purple dot in medium 2. The light is incident on the interface between the two media at the position of the green dot, which is fixed.

Rating: 5 - 1 votes

This simulation allows students to visualize what can be seen from various positions when looking in a mirror. Students have the ability to change the height of the mirror and show a figure.

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This interactive simulation allows users to visualize the double-slit experiment.