They start from the middle, and spread out equally.
Water waves are mechanical waves that require a medium (water) to propagate, while electromagnetic waves are a form of energy that can travel through a vacuum. Water waves exhibit transverse motion, while electromagnetic waves have electric and magnetic fields oscillating perpendicular to each other and the direction of wave propagation. Additionally, water waves have lower frequencies and wavelengths compared to electromagnetic waves.
No, water waves are not electromagnetic in nature. They are mechanical waves that result from the disturbance of water molecules. Electromagnetic waves, on the other hand, are a different type of wave that do not require a medium to propagate.
Electromagnetic or light waves are transverse waves that do not require a medium (such as air or water) to propagate, whereas water and sound waves are mechanical waves that require a medium for propagation. Electromagnetic waves can travel through a vacuum, whereas water and sound waves cannot. Additionally, electromagnetic waves travel at the speed of light, while the speed of water and sound waves depends on the medium through which they are traveling.
Electromagnetic waves do not require a medium to travel through, unlike sound and water waves which need a material medium. Electromagnetic waves also travel at the speed of light and can travel through a vacuum. Additionally, electromagnetic waves have different properties such as wavelength, frequency, and polarization compared to sound and water waves.
No, water waves are mechanical waves that result from the movement of water molecules. Electromagnetic waves, on the other hand, are waves of energy that do not require a medium to travel through and include light, radio waves, and microwaves.
they are both electromagnetic waves
Electromagnetic waves can travel through space.Mechanical waves need matter to transfer energy.
Water waves are mechanical waves that require a medium (water) to propagate, while electromagnetic waves are a form of energy that can travel through a vacuum. Water waves exhibit transverse motion, while electromagnetic waves have electric and magnetic fields oscillating perpendicular to each other and the direction of wave propagation. Additionally, water waves have lower frequencies and wavelengths compared to electromagnetic waves.
It means explain how electromagnetic waves are different than water and sound waves.
No, water waves are not electromagnetic in nature. They are mechanical waves that result from the disturbance of water molecules. Electromagnetic waves, on the other hand, are a different type of wave that do not require a medium to propagate.
No.They are mechanical waves.
Electromagnetic or light waves are transverse waves that do not require a medium (such as air or water) to propagate, whereas water and sound waves are mechanical waves that require a medium for propagation. Electromagnetic waves can travel through a vacuum, whereas water and sound waves cannot. Additionally, electromagnetic waves travel at the speed of light, while the speed of water and sound waves depends on the medium through which they are traveling.
Both are electromagnetic waves (electromagnetic radiation or electromagnetic energy).
Electromagnetic waves do not require a medium to travel through, unlike sound and water waves which need a material medium. Electromagnetic waves also travel at the speed of light and can travel through a vacuum. Additionally, electromagnetic waves have different properties such as wavelength, frequency, and polarization compared to sound and water waves.
Radio and light waves are electromagnetic waves, sound waves are not.
No, water waves are mechanical waves that result from the movement of water molecules. Electromagnetic waves, on the other hand, are waves of energy that do not require a medium to travel through and include light, radio waves, and microwaves.
"Cymatic" refers to sound waves and similar vibrations, not to electromagnetic waves. You can do some reading on electromagnetic waves - to get started, you might read the Wikipedia article - and then decide what similarities there are to sound waves.