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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Please note that the Go-Lab Authoring Platform Graasp is no longer maintained.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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Rating: 3.8 - 4 votes

There are two similar labs that you can see if you create a space, feel free to choose which one to use. Please note that while the preview shows you only one, the screenshots present both labs.

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This lab is designed to allow students to explore different aspects of satellite motion. Students can vary the mass of the satellite, the orbital radius of the satellite and the body that the satellite is orbiting.

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  This lab helps to observe the phenomenon of the electromagnetic induction. 

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Light a light bulb by waving a magnet. This demonstration of Faraday's Law shows you how to reduce your power bill at the expense of your grocery bill.

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This simulation allows students to study a magnet. Students have the ability to do this in 2D and 3D and change the magnetic moment, polar angle, and azimuth. 

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This simulation allows students to study the magnetic field of a linear current conductor. Students have the ability to change the current and radius of the conductor, move the compass around, and show or hide help objects.

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In this lab, you can explore motional emf. The red rod can slide without friction on the blue rails. A constant force (in red) is applied on the rod to the right. We might think that that would result in motion with constant acceleration to the right, but that's not what we see.

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The lab shows the magnetic field near two long-straight current-carrying wires. If the wire is drawn in red, the current is directed out of the screen. If the wire is drawn in blue, the current is directed into the screen.

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This lab shows a set of three static scenarios. Using the buttons, you can choose between an uncharged electroscope, a positively charged electroscope, and a negatively charged electroscope.

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Watch a string vibrate in slow motion. Wiggle the end of the string and make waves, or adjust the frequency and amplitude of an oscillator. Adjust the damping and tension. The end can be fixed, loose, or open.Primary aims of the lab: