In a dynamo, mechanical energy is transformed into electrical energy through electromagnetic induction. Rotation of a coil of wire within a magnetic field generates an electric current as the magnetic field induces a voltage across the coil.
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Mechanical energy is transformed into electrical energy in a dynamo. This occurs when a coil of wire rotates within a magnetic field, inducing an electric current to flow in the wire.
A dynamo generates electrical energy by converting mechanical energy into electrical energy through electromagnetic induction.
A change from one form of energy into another is called energy transformation.
In a hand-cranked flashlight, the mechanical energy from the cranking motion is converted into electrical energy through a generator or dynamo. This electrical energy is then stored in a rechargeable battery to power the light-emitting diode (LED) bulb, which emits light energy when the flashlight is turned on.
A dynamo uses Faraday's law of electromagnetic induction to convert mechanical energy into electrical energy. When the dynamo rotates, it produces a changing magnetic field that induces a current in a wire coil, creating electrical energy. This process relies on the principles of electromagnetic induction to generate electricity from mechanical motion.