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No, sunlight and radiowaves are not compression waves. Sunlight consists of electromagnetic waves, while radiowaves are a type of electromagnetic wave in the radio frequency range. Compression waves are mechanical waves that require a medium to propagate, such as sound waves.
Most waves that travel through a substance are mechanical waves. These waves require a medium (such as water, air, or solids) to propagate. Sound waves, seismic waves, and ocean waves are examples of mechanical waves.
Sound waves are longitudinal waves; they travel from side to side, not up and down like transverse waves.
Microphones will convert sound waves into electrical signals. An ear (i..e human ear) will also convert sound waves into electrical signals.
Sound waves are not a type of electromagnetic wave. Sound waves are mechanical vibrations that require a medium, such as air or water, to propagate, whereas electromagnetic waves can travel through a vacuum.
sound waves aka pressure waves
Ocean waves, seismic waves, and sound waves are some examples.
Ocean waves, seismic waves, and sound waves are some examples.
Ocean waves, seismic waves, and sound waves are some examples.
Sound, and P-waves of an earthquake.
electromagnetic waves
sound waves are a example of mechanical waves
Examples of longitudinal waves include sound waves, seismic waves, and sound waves in solids (such as ultrasound waves). These waves propagate by compressing and rarefying the medium in the direction of wave motion.
Yes it is.
Some examples include waves on a water surface; sound waves; electromagnetic waves (this includes light); and gravitational waves.
Mechanical waves are waves that need a medium to go through. Some examples are ocean waves, seismic waves, and sound waves. Also when a slinky moves back and forth or at right angles it is like a wave.
Examples of longitudinal waves other than sound include seismic waves (such as P-waves and S-waves), ultrasonic waves used in medical imaging, and waves in slinkies or springs. These waves propagate through a medium by causing particles to vibrate parallel to the direction of wave travel.