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How do electromagnetic waves carry energy?

Electromagnetic waves carry energy through oscillating electric and magnetic fields that propagate through space. The energy is transferred as the waves travel, allowing them to transmit information and power over long distances.


Can energy only be transferred by waves or particles?

Energy can be transferred by both waves and particles..Kinetic energy can be transferred through particle collisions. In low energy particle collisions, one body strikes another body, altering the second body's momentum, and/or deforming one or both bodies. In high-energy particle collision, the kinetic energy of the inbound particle is sufficient to disrupt the stable condition of the impacted particle, atom, or molecule..Energy is commonly transferred by waves, such as sound and ocean waves. In all such cases, one can argue that any given particle is briefly involved, however it is the waves, not any single particle, that carries the energy over long distances..Light (and all electromagnetic energies) is a special case in which photons behave as both waves and particles. Thus we can argue that, even in this case, energy is transferred by both waves and by particles.


How is thermal energy transferred by electromagnetic waves?

Thermal energy is transferred by electromagnetic waves through a process called radiation. When an object is heated, it emits electromagnetic waves, such as infrared radiation, which carry thermal energy from the hotter object to a cooler one. This transfer of energy occurs without the need for a medium, like air or water, making it an efficient way to transfer heat over long distances.


How energy travels without particles?

Energy can travel through space in the form of electromagnetic waves, such as light and radio waves. These waves don't require particles to propagate because they are made up of oscillating electric and magnetic fields. This allows energy to be transferred over long distances without the need for a physical medium.


Does energy travel through water?

Yes, energy can travel through water in the form of waves, such as sound waves or electromagnetic waves. These waves can propagate through water and carry energy over long distances.


What is a disturbance that travels through mediums?

A disturbance that travels through mediums is a wave. Waves can be characterized by how they travel (like sound waves through air or water waves on the ocean), with energy being transferred from one point to another without the physical movement of matter over long distances.


What is the lowest energy wave?

Radio waves are the lowest energy waves in the electromagnetic spectrum. They have long wavelengths and carry less energy compared to other types of waves like visible light or X-rays.


What do waves transport over distances?

Waves can transport energy and information over long distances. This can include sound waves carrying vibrations through the air or water waves transporting energy across the surface of a body of water.


Are heat waves electromagnetic waves?

Heat waves are the same as infra-red radiation; however it is the more specific name. Electromagnetic waves range from Radio Waves to Gamma Rays so, technically, the answer is no.


What are three waves that need a medium?

Sound waves: Sound waves require a medium, such as air, water, or solids, to propagate because they rely on the vibration of particles to transmit energy. Seismic waves: Seismic waves, generated by earthquakes or explosions, also need a medium like rock or soil to travel through. Ocean waves: Ocean waves need water as a medium for their motion and propagation, as they are driven by the energy transferred from the wind to the water's surface.


What is one example of a wave with low quantum energy?

Radio waves are an example of waves with low quantum energy. They have long wavelengths and low frequencies, which correspond to low energy photons.


What is waves that are very long and do not have much light energy?

Ultraviolet light, x-rays, and gamma rays are all electromagnetic waves that are more energetic than visible light.