If the frequency of a sound wave is increased, the pitch of the sound also increases, making it sound higher. This means that the number of complete cycles of the wave occurring in a second is increased.
When the pitch is increased, the frequency of sound waves also increases, causing the eardrum to vibrate at a higher rate. This increased vibration can lead to increased pressure on the eardrum, potentially causing discomfort or even damage if the sound level is too high.
When the energy of a wave is increased, the frequency remains the same. Frequency is determined by the source of the wave and does not change with energy.
If the time period is increased, the frequency decreases inversely proportionally. This is because frequency is the reciprocal of the time period. So, as the time period increases, the frequency decreases.
.The frequency increases
If the frequency of a sound is doubled, the wavelength would be halved. This is because wavelength and frequency have an inverse relationship: as one increases, the other decreases.
If the frequency of a sound is increased, the pitch goes higher.
When the pitch is increased, the frequency of sound waves also increases, causing the eardrum to vibrate at a higher rate. This increased vibration can lead to increased pressure on the eardrum, potentially causing discomfort or even damage if the sound level is too high.
When frequency is increased, the number of complete wave cycles that pass a point in a given time increases. This results in a shorter wavelength and higher energy for electromagnetic waves. In terms of sound, higher frequency corresponds to higher pitch.
When the energy of a wave is increased, the frequency remains the same. Frequency is determined by the source of the wave and does not change with energy.
Tightening the string will make its' frequency higher.
If the time period is increased, the frequency decreases inversely proportionally. This is because frequency is the reciprocal of the time period. So, as the time period increases, the frequency decreases.
If the pitch of a sound is increased, the frequency of the sound waves also increases. Since the speed of sound remains constant in a given medium, an increase in frequency results in a decrease in wavelength. Thus, a higher pitch corresponds to a shorter wavelength.
it's frequency increases
.The frequency increases
Tighten the string
If the frequency of a sound is doubled, the wavelength would be halved. This is because wavelength and frequency have an inverse relationship: as one increases, the other decreases.
No it doesn't. The amplitude is the distance of the crest/trough from the rest axis. The frequency is the rate at which the wave "pulsates". If the waves are closer together, then the frequency is increased. If the waves are bigger in width, the amplitude is increased.