Electromagnetic radiation E= hf is characterized by its frequency, f.
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Sonar, ultrasound, high-frequency sound.
auditory nervedecibelsfrequencyintensitypitch(sound) wavesvibrationsvolumeHearing .
The angular frequency (omega) of a wave is directly related to its frequency. The frequency of a wave is equal to the angular frequency divided by 2. In other words, frequency omega / 2.
* Probability * Correlation * Validity * Reliability * Variable * Frequency distribution
noise vibrations decibels auditory nerve noises noisy
Frequency and wavelength of a wave are inversely related: as frequency increases, wavelength decreases, and vice versa. This relationship is described by the wave equation: speed = frequency x wavelength. In other words, for a given wave speed, if frequency increases, wavelength must decrease to maintain the same speed.
The relationship between vibration and the frequency of a sound wave is that the frequency of a sound wave is directly related to the rate of vibration of the sound source. In other words, the higher the frequency of a sound wave, the faster the source of the sound is vibrating.
Words = Palabras High= Alto/a frequency= frecuencia. high frequency words = palabras alta frecuencia.
Frequency has a 'Q' in it.
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Pitch refers to the perceived frequency of a sound, whether it is high or low. Intensity, on the other hand, refers to the level of loudness or softness of a sound. In other words, pitch is related to the frequency of the sound wave, while intensity is related to the amplitude of the sound wave.