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  1. Investigue a lei de Faraday e como um fluxo magnético variável produz um fluxo de eletricidade!

    • Português do Brasil

      Investigue a lei de Faraday e como um fluxo magnético...

    • Français

      Enquêter sur la loi de Faraday et comment un flux magnétique...

    • Deutsch

      Bringen Sie durch Bewegen eines Magnets eine Glühbirne zum...

    • Dansk

      Undersøg Faradays lov og hvordan en ændring af magnetisk...

    • Bahasa Indonesia

      Investigate Faraday's law and how a changing magnetic flux...

  2. Descubra a lei de Faraday da indução eletromagnética com esta simulação interativa. Mova um ímã perto de uma bobina ou de uma lâmpada e observe o efeito na corrente elétrica. Experimente diferentes cenários e descubra os princípios do eletromagnetismo.

  3. Play with a bar magnet and coils to learn about Faraday's law. Move a bar magnet near one or two coils to make a light bulb glow. View the magnetic field lines.

  4. Description. Investigate Faraday's law and how a changing magnetic flux can produce a flow of electricity! Sample Learning Goals. Explain what happens when the magnet moves through the coil at different speeds and how this affects the brightness of the bulb and the magnitude & sign of the voltage.

    • Version 1.1.10
  5. Simulação PHET - Lei de Faraday. Descrição de como realizar a simulação PHET sobre Lei de Faraday. Link da Simulação:...

    • 5 min
    • 2,7K
    • Nadia
  6. Predict the direction of the magnetic field for different locations around a bar magnet and an electromagnet. Compare and contrast bar magnets and electromagnets. Identify the characteristics of electromagnets that are variable and what effects each variable has on the magnetic field's strength and direction.

  7. Learn about the relationship between electricity and magnetism in this interactive simulation. Build your own circuit with a battery, a light bulb, and a coil, and see how the coil reacts to a moving magnet. Experiment with different magnets and coils, and observe the induced current and voltage. This simulation is based on Faraday's law of electromagnetic induction.