a longitudinal or transverse wave
Light waves are not caused by vibrating objects. Light waves are electromagnetic waves that do not require a medium to propagate, unlike sound waves which are caused by vibrating objects. The vibrations of charged particles, such as electrons, generate light waves.
Energy waves are caused by the vibration or disturbance of energy sources, such as sound waves resulting from vibrating objects or electromagnetic waves produced by accelerating electric charges. These waves carry energy through space by transferring the vibration or disturbance from one particle to another.
Vibrating molecules create sound waves.
The result of vibrating particles in matter is the generation of sound waves. As particles vibrate, they transfer energy to neighboring particles, causing a chain reaction that creates a disturbance in the surrounding medium, leading to the transmission of sound.
Longitudinal waves have vibrating particles that move parallel to the direction of the wave. Sound waves traveling through air are an example of longitudinal waves.
Light waves are not caused by vibrating objects. Light waves are electromagnetic waves that do not require a medium to propagate, unlike sound waves which are caused by vibrating objects. The vibrations of charged particles, such as electrons, generate light waves.
Energy waves are caused by the vibration or disturbance of energy sources, such as sound waves resulting from vibrating objects or electromagnetic waves produced by accelerating electric charges. These waves carry energy through space by transferring the vibration or disturbance from one particle to another.
Vibrating molecules create sound waves.
They pass from particle to particle by vibrating the particle. When the particle touches another particle, it transfers the sound energy to that particle. Hence the Sound Wave.
SEISMIC WAVES.Tranverse Waves.
They pass from particle to particle by vibrating the particle. When the particle touches another particle, it transfers the sound energy to that particle. Hence the Sound Wave.
Yes, the phase of a vibrating particle can be zero. The phase represents the position of the particle in its oscillation cycle, with zero phase typically corresponding to the starting point of the oscillation.
by vibrating sound waves
Air
The result of vibrating particles in matter is the generation of sound waves. As particles vibrate, they transfer energy to neighboring particles, causing a chain reaction that creates a disturbance in the surrounding medium, leading to the transmission of sound.
Electromagnetic waves.
Longitudinal waves have vibrating particles that move parallel to the direction of the wave. Sound waves traveling through air are an example of longitudinal waves.