In general, light does not affect sound. Sound waves and light waves are different forms of energy that usually do not influence each other directly. However, extreme cases like laser-induced sound or photoacoustic effects can show interactions between light and sound.
Wavelength affects sound by determining the pitch of the sound. Shorter wavelengths create higher pitch sounds, while longer wavelengths create lower pitch sounds. In terms of light, wavelength determines the color that is perceived. Shorter wavelengths correspond to blue and violet light, while longer wavelengths correspond to red and orange light.
Earth's magnetic field does not affect light or sound. It primarily interacts with charged particles such as electrons and protons in Earth's atmosphere and in space.
Diffraction is the bending of waves around obstacles or through openings. In the context of light and sound, diffraction causes waves to spread out and change direction when they encounter obstacles or pass through small openings. This affects the propagation of light and sound by causing them to diffract, or spread out, which can impact how they are perceived and interact with their surroundings.
faster Light travels faster than sound. Light travels at 300 000 000 m/s whereas sound travels at around 340 m/s at room temperature in air. That's a 880,000x difference!
Loudness is to brightness as sound is to light.
Light slows as it enters material with a higher density whereas sound waves speed up in materials of higher density. Light bends towards the "normal" as it passes from a less dense medium to a higher density medium ie air into glass. Both sound and light can be reflected from surfaces.
Wavelength affects sound by determining the pitch of the sound. Shorter wavelengths create higher pitch sounds, while longer wavelengths create lower pitch sounds. In terms of light, wavelength determines the color that is perceived. Shorter wavelengths correspond to blue and violet light, while longer wavelengths correspond to red and orange light.
The sound waves affect their sence of directions.
Sound and light are both forms of energy that is carried from one place to another.they travel in all directions from the source.
Earth's magnetic field does not affect light or sound. It primarily interacts with charged particles such as electrons and protons in Earth's atmosphere and in space.
Diffraction is the bending of waves around obstacles or through openings. In the context of light and sound, diffraction causes waves to spread out and change direction when they encounter obstacles or pass through small openings. This affects the propagation of light and sound by causing them to diffract, or spread out, which can impact how they are perceived and interact with their surroundings.
sound and light are energyperformed from ave but light travels in a straight direction
faster Light travels faster than sound. Light travels at 300 000 000 m/s whereas sound travels at around 340 m/s at room temperature in air. That's a 880,000x difference!
Loudness is to brightness as sound is to light.
It is different because sound vibrates and light reflects
Light can. Sound can't.
they are related by that light can turn into sound energy