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Online labs provide your 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. Labs can be combined with dedicated Apps to create Inquiry Learning Spaces (ILSs).

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

If you select labs in German, the descriptions on this website will still be displayed in English. However, when you include the lab in an ILS and change the language setting of the ILS to German, the lab will be displayed in German within the ILS.

Energy
German
Above 16
Energy Transformation
Virtual Lab
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Rating: 4.4 - 11 votes

In the Electrical Circuit Lab students can create their own electrical circuits and do measurements on it. In the circuits the students can use resistors, light bulbs, switches, capacitors and coils. The circuits can be powered by a AC/DC power supply or batteries.

Rating: 3.7 - 3 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.

Rating: 2 - 1 votes

Explore the forces at work when pulling against a cart,and pushing a refrigerator, crate, or person. Create an applied force and see how it makes objects move. Change friction and see how it affects the motion of objects.Aims of the lab:

No votes have been submitted yet.

Stretch and compress springs to explore the relationships between force, spring constant, displacement, and potential energy! Investigate what happens when two springs are connected in series and parallel.

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 Solar Takeoff is a flight-simulator for solar airplanes in real weather conditions in form of races. This online-lab offers insight in many fields as mathematics, physics, meteorology, photovoltaics, aeronautics and programming for students from 16 to 18 years old.

No votes have been submitted yet.

A single mass attached to a spring, which is connected to a wall. An example of a simple linear oscillator. 

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This simulation shows a single mass on a spring, which is connected to a wall. This is an example of a simple linear oscillator.You can change mass, spring stiffness, and friction (damping). You can drag the mass with your mouse to change the starting position.

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This physics-based simulation shows a rigid body attached to a curved "roller coaster" path. Uses the myPhysicsLab 2D Rigid Body Physics Engine.

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This simulation shows 2 balls on a roller coaster track. The 2 balls are connected by a spring.

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If you had first-year physics in college, you probably solved lots of problems with a ball rolling down a flat inclined plane. Did you ever wonder how to solve for the motion with a curved surface instead? Of course the same principles apply, but the forces are changing as the slope changes.