In a filament lamp, most of the energy is lost as heat rather than light. It's estimated that about 90% of the energy is dissipated as heat, while only about 10% is transformed into visible light.
When you turn on an electric lamp, electrical energy is converted into light energy and heat energy. The electrical energy flows through the lamp's filament, causing it to heat up and emit light. Some energy is also lost as heat due to resistance in the lamp's circuit.
In an electric lamp, electrical energy is transformed into light energy and heat energy. When the lamp is turned on, the electrical current flows through the bulb's filament, causing it to heat up and emit light. Some of the electrical energy is also transformed into heat energy due to resistance in the filament.
Inside an electric lamp, electrical energy is converted into light and heat energy. The electrical energy flows through the lamp's filament, heating it up to produce light. Some of the electrical energy is also converted into heat energy due to resistance in the filament.
When you turn on a lamp, electric energy is converted into light energy and heat energy. The electric current flowing through the lamp's filament generates heat, which in turn produces light.
Electric energy is converted into light and heat energy in an incandescent lamp. The electric current passing through the filament of the lamp heats it up, causing it to emit light as well as heat.
When you turn on an electric lamp, electrical energy is converted into light energy and heat energy. The electrical energy flows through the lamp's filament, causing it to heat up and emit light. Some energy is also lost as heat due to resistance in the lamp's circuit.
Mostly heat, but that heat causes a filament to glow, which makes light.
In an electric lamp, electrical energy is transformed into light energy and heat energy. When the lamp is turned on, the electrical current flows through the bulb's filament, causing it to heat up and emit light. Some of the electrical energy is also transformed into heat energy due to resistance in the filament.
Inside an electric lamp, electrical energy is converted into light and heat energy. The electrical energy flows through the lamp's filament, heating it up to produce light. Some of the electrical energy is also converted into heat energy due to resistance in the filament.
When you turn on a lamp, electric energy is converted into light energy and heat energy. The electric current flowing through the lamp's filament generates heat, which in turn produces light.
Electric energy is converted into light and heat energy in an incandescent lamp. The electric current passing through the filament of the lamp heats it up, causing it to emit light as well as heat.
When you turn on an electric lamp, the electricity flows through the lamp's circuit, causing the bulb's filament to heat up and emit light. The electrical energy is converted into light energy and heat energy.
Electrical energy is transformed into electromagnetic energy.
In a filament lamp, electrical energy is transformed into both light and heat energy. The electrical energy is converted to light energy as the filament heats up and emits light. However, a significant portion of the electrical energy is also converted to heat energy due to the resistance of the filament.
When you turn on a lamp, electrical energy from the power source is converted into light energy and heat energy by the light bulb. The electrical energy flows through the wires, powering the filament in the bulb which then emits light.
In a lamp, electrical energy from the power source is converted into light and heat energy. This transformation occurs when the electric current passes through the filament inside the bulb, causing it to glow and emit light. Some of the electrical energy is also converted into heat energy, which can be felt as warmth when the lamp is on.
The energy present in a lighted lamp is primarily electrical energy, which is converted into light and heat energy. The electrical energy is used to power the lamp's filament, which emits light and produces heat when it becomes incandescent.