Subject Domains
    Astronomy
    • Astronomical Objects And Their Characteristics
    • Astronomy Related Sciences And Fields Of Study
    • Effect And Phenomena
    • Terms And Concepts
    Biology
    • Botany
    • Ecology
    • Humans And Animals
    • Life Processes
    • Variation, Inheritance And Evolution
    Chemistry
    • Analytical Chemistry
    • Chemical Reactions
    • Inorganic Chemistry
    • Organic Chemistry
    • Physical Chemistry
    Engineering
    • Biomedical Engineering
    • Civil Engineering
    • Electrical Engineering
    • Mechanical Engineering
    Environmental Education
    • Climate
    • Energy
    • Environment
    • Environmental Protection
    • Natural Resources
    Geography And Earth Science
    • Earth Science
    • Geography
    Mathematics
    • Algebra And Number Theory
    • Applied Mathematics
    • Differential And Difference Equation
    • Geometry
    • Logic And Foundations
    • Numbers And Computation
    • Statistics And Probability
    • Topic From Subjects
    Physics
    • Electricity And Magnetism
    • Energy
    • Fields
    • Forces And Motion
    • High Energy Physics
    • History Of Science And Technology
    • Light
    • Radioactivity
    • Solids, Liquids And Gases
    • Sound
    • Technological Applications
    • Tools For Science
    • Useful Materials And Products
    • Waves
    Technology
    • Computer Science And Technology
    • Design
    • Electricity - Electronics
    • Industry
    • Mechanics
    • Production
Big Ideas Of Science
  • Energy Transformation
  • Fundamental Forces
  • Our Universe
  • Structure Of Matter
  • Microcosm (Quantum)
  • Evolution And Biodiversity
  • Organisms And Life Forms
  • Planet Earth
Lab Types
  • Remote Lab
  • Virtual Lab
  • Data Set
Age Ranges
  • Before 7
  • 7-8
  • 9-10
  • 11-12
  • 13-14
  • 15-16
  • Above 16
Languages
  • Afrikaans
  • Albanian
  • Arabic
  • Basque
  • Belarusian
  • Bosnian
  • Bulgarian
  • Catalan
  • Central Khmer
  • Croatian
  • Czech
  • Danish
  • Dutch
  • English
  • Estonian
  • Finnish
  • French
  • Galician
  • Georgian
  • German
  • Greek
  • Haitian
  • Hindi
  • Hungarian
  • Icelandic
  • Italian
  • Japanese
  • Kannada
  • Kazakh
  • Korean
  • Kurdish
  • Lao
  • Latvian
  • Macedonian Slavic
  • Malay
  • Malayalam
  • Maori
  • Marathi
  • Norwegian Bokmål
  • Norwegian Nynorsk
  • Oriya
  • Persian
  • Polish
  • Portuguese
  • Pushto
  • Romanian
  • Russian
  • Serbian
  • Simplified Chinese
  • Sinhala
  • Slovak
  • Slovenian
  • Spanish
  • Swahili
  • Swedish
  • Tamil
  • Telugu
  • Thai
  • Tibetan
  • Traditional Chinese
  • Turkish
  • Turkmen
  • Ukrainian
  • Vietnamese
  • Welsh
Apply
Reset

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.

If you select labs in Kannada, 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 Kannada, the lab will be displayed in Kannada within the ILS.

Kannada
Fundamental Forces
Chemistry
Sort by

No votes have been submitted yet.

Explore pressure under and above water. See how pressure changes as you change fluids, gravity, container shapes, and volume. Primary aims of the lab:Investigate how pressure changes in air and water.Discover how you can change pressure.

Rating: 4.5 - 2 votes

Create your own sandwich and then see how many sandwiches you can make with different amounts of ingredients. Do the same with chemical reactions. See how many products you can make with different amounts of reactants. The primary aims of the lab are:

Rating: 5 - 1 votes

How do you know if a chemical equation is balanced? What can you change to balance an equation? Play a game to test your ideas! Primary aims of the lab:

No votes have been submitted yet.

Why does a balloon stick to your sweater? Rub a balloon on a sweater, then let go of the balloon and it flies over and sticks to the sweater. View the charges in the sweater, balloons, and the wall. Learning goals

No votes have been submitted yet.

Explore molecule shapes by building molecules in 3D! How does molecule shape change with different numbers of bonds and electron pairs? Find out by adding single, double or triple bonds and lone pairs to the central atom. Then, compare the model to real molecules!

Rating: 3 - 1 votes

"The thicker the glass, the darker the brew, the less the light that passes through." Make colorful concentrated and dilute solutions and explore how much light they absorb and transmit using a virtual spectrophotometer!Primary aims:

No votes have been submitted yet.

This lab allows students to watch different types of molecules form a solid, liquid, or gas.

No votes have been submitted yet.

Do you ever wonder how a greenhouse gas affects the climate, or why the ozone layer is important? Use the sim to explore how light interacts with molecules in our atmosphere.

No votes have been submitted yet.

How did Rutherford figure out the structure of the atom without being able to see it? Simulate the famous experiment in which he disproved the Plum Pudding model of the atom by observing alpha particles bouncing off atoms and determining that they must have a small core.