Longitudinally & transverse
Similarities: Both light and sound waves are forms of energy that travel in waves. They can both be reflected, refracted, and diffracted. Differences: Light waves can travel through a vacuum, while sound waves require a medium to travel through. Light waves are electromagnetic waves, while sound waves are mechanical waves that require a medium to propagate. Light waves travel much faster than sound waves.
THEY ARE THE sAME
Light waves and sound waves are both forms of energy that travel in waves, but they have key differences. Light waves are electromagnetic waves that can travel through a vacuum, while sound waves are mechanical waves that require a medium, such as air or water, to travel through. Light waves travel much faster than sound waves, at a speed of about 186,282 miles per second in a vacuum, while sound waves travel at a speed of about 767 miles per hour in air. Additionally, light waves are transverse waves, meaning they oscillate perpendicular to the direction of travel, while sound waves are longitudinal waves, meaning they oscillate parallel to the direction of travel.
Red light waves and blue light waves travel at the same speed in a vacuum, which is the speed of light (about 299,792 km/s). The perception that red light travels faster could be due to differences in how the human eye perceives the colors or how the waves interact with materials.
The term is "electromagnetic waves". Such waves are variations in the electric and magnetic field of space, which propagate as a wave, at the speed of light. They include light itself, x-rays, radio waves, and others - really, the ONLY difference between the different types of electromagnetic waves are the differences in frequency, and the related differences in wavelength and energy per photon. (The photon is the individual particle of such a wave.)
the seriosly obviose one- one is for light the othe is for sound, if you dont know which is which then you need some help.....
Sound waves and light waves are both forms of energy that travel in waves, but they have different properties and behaviors. Sound waves are mechanical waves that require a medium, such as air or water, to travel through, while light waves are electromagnetic waves that can travel through a vacuum. Sound waves travel slower than light waves and can be reflected, refracted, and diffracted, while light waves can also be polarized and undergo interference. Sound waves are longitudinal waves, meaning they travel by compressing and expanding the medium, while light waves are transverse waves, with oscillations perpendicular to the direction of travel.
The differences between light and sound are as follows:Light can be considered to be made of waves as well as particles. Sound is only a wave. It does not show particle nature.Light waves are electromagnetic waves while sound waves are mechanical waves.Light waves are transverse while sound waves are longitudinal.Light waves can travel in vacuum. Sound waves require a material medium to travel, and hence, cannot travel in vacuum.The speed of light in a medium is constant. The velocity of sound waves can change.In sound waves, the particles of the medium actually oscillate. In a light wave, the electric and magnetic vectors oscillate.Light waves can be polarized, but sound waves cannot.Light waves travel much faster than sound waves. The speed of light is a physical constant. Its value is exactly 299,792,458 metres per second in vacuuum. The speed of sound is 343 metres per second in dry air at 20°C.And finally, a simple one - you can see light while you can hear sound.
Differences: Sound is a mechanical wave that requires a medium to travel, while light is an electromagnetic wave that can travel through a vacuum. Sound travels slower than light. Sound waves are longitudinal, while light waves are transverse. Similarities: Both sound and light waves exhibit wave properties such as reflection, refraction, diffraction, and interference. Both can be described in terms of frequency and wavelength. Sound and light can both create patterns, such as standing waves.
they travel at a different frequency.
The light waves change speed at the interface between the air and water, causing them to refract or bend. This occurs because light waves travel at different speeds in different mediums due to differences in their refractive indices.
The frequency/wavelength of the electromagnetic waves that comprise them is.