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Light energy is stored in a bulb when it is switched off. When the bulb is turned on, electrical energy is converted into light energy and heat.
Electrical energy is converted into light energy and heat energy when a light bulb is turned on. The electrical energy flows through the bulb's filament, causing it to heat up and emit light.
A light bulb transfers electrical energy into light and heat energy when it is turned on. The electrical energy is converted into photons, which emit light when passing through the bulb's filament.
An example of emitted light is the light produced by a light bulb when it is turned on. The light bulb emits visible light by converting electrical energy into light energy.
The coiled filament in a light bulb is typically located at the center of the bulb inside the glass envelope. This filament is what heats up and produces light when an electric current passes through it.
light and heat energy occur in a light bulb when it is turned on.
To have enough bulb or surface area to produce the required amount of light.
Light energy is stored in a bulb when it is switched off. When the bulb is turned on, electrical energy is converted into light energy and heat.
Electrical energy is converted into light energy and heat energy when a light bulb is turned on. The electrical energy flows through the bulb's filament, causing it to heat up and emit light.
A light bulb transfers electrical energy into light and heat energy when it is turned on. The electrical energy is converted into photons, which emit light when passing through the bulb's filament.
When a light bulb is turned on, electrical energy is converted into light energy and heat energy. Electrical energy powers the flow of electrons through the filament, generating light energy and heat energy in the process.
An example of emitted light is the light produced by a light bulb when it is turned on. The light bulb emits visible light by converting electrical energy into light energy.
The coiled filament in a light bulb is typically located at the center of the bulb inside the glass envelope. This filament is what heats up and produces light when an electric current passes through it.
Yes, it's true. When a light bulb is turned on, most of the electrical energy is converted into heat, but some of it is also converted into light energy. This is what allows the light bulb to produce light.
A 150 watt light bulb consumes 150 watts of energy per hour when it is turned on.
When an electric light is turned on, electrical energy is converted into light energy and heat energy. The electrical energy powers the light bulb, causing it to emit light. Some of the electrical energy is also transformed into heat energy due to the resistance within the light bulb.
A light bulb produces light energy and thermal energy while it is turned on. The light energy is visible light that illuminates the surroundings, while the thermal energy is the heat generated as a byproduct of the light production.