Wave amplitude affects the volume or loudness of the sound we hear, with higher amplitudes corresponding to louder sounds. Frequency affects the pitch of the sound we hear, with higher frequencies corresponding to higher pitch sounds. Together, the amplitude and frequency of a sound wave determine how we perceive and interpret the sound.
Wave amplitude influences the loudness of sounds we hear, with larger amplitudes creating louder sounds. Wave frequency determines the pitch of the sound, with higher frequencies corresponding to higher pitches. Together, amplitude and frequency work to create a unique sound experience, where amplitude affects the volume and frequency affects the tone or pitch of the sound.
We hear different sounds based on the frequency and amplitude of the sound waves. Higher frequency sounds are perceived as high-pitched, while lower frequency sounds are perceived as low-pitched. Greater amplitude results in louder sounds. Additionally, the timbre or quality of a sound is determined by the unique combination of frequencies that make up the sound wave.
The wavelength and frequency affect how the way is perceived. In sound it would affect the pitch that you hear, in the visible light spectrum it would affect what color you see. The amplitude would be how easy it is to perceive, it is the intensity (magnitude) of the wave.
In case of mechanical waves, ie waves propagating through material medium the amplitude of the waves decides the intensity of the waves as intensity is directly proportional to the square of its amplitude. Pitch is related to the frequency of the wave. As pitch increases then in one second more number of waves would cross a particular point in the medium. If velocity of the wave in the medium remains constant, the wavelength gets reduced as the pitch increases.
amplitude is the maximum displacement of the body therefore it is related to hear
Wave amplitude influences the loudness of sounds we hear, with larger amplitudes creating louder sounds. Wave frequency determines the pitch of the sound, with higher frequencies corresponding to higher pitches. Together, amplitude and frequency work to create a unique sound experience, where amplitude affects the volume and frequency affects the tone or pitch of the sound.
We hear different sounds based on the frequency and amplitude of the sound waves. Higher frequency sounds are perceived as high-pitched, while lower frequency sounds are perceived as low-pitched. Greater amplitude results in louder sounds. Additionally, the timbre or quality of a sound is determined by the unique combination of frequencies that make up the sound wave.
The amplitude is the volume, while the frequency is the pitch.
Wave amplitude affects the loudness of the sound you hear - higher amplitude waves create louder sounds. Wave frequency affects the pitch of the sound you hear - higher frequency waves create higher pitched sounds. Together, amplitude and frequency determine the overall characteristics of the sound wave you perceive.
It depends on the type of animal. Dogs can hear a higher frequency than humans, which is the concept behind a dog whistle. Elephants can hear lower sounds than humans.
The wavelength and frequency affect how the way is perceived. In sound it would affect the pitch that you hear, in the visible light spectrum it would affect what color you see. The amplitude would be how easy it is to perceive, it is the intensity (magnitude) of the wave.
In case of mechanical waves, ie waves propagating through material medium the amplitude of the waves decides the intensity of the waves as intensity is directly proportional to the square of its amplitude. Pitch is related to the frequency of the wave. As pitch increases then in one second more number of waves would cross a particular point in the medium. If velocity of the wave in the medium remains constant, the wavelength gets reduced as the pitch increases.
The carrier wave carries the information that you hear. It is modulated by the sound which varies its amplitude or frequency. Without the carrier there would be nothing to vary so you would hear nothing.
Both whales and elephants can hear extremely low frequency sounds.
It is less loud. Frequency affects what we hear as pitch. Amplitude affects volume.
Yes, humans can hear high frequency sounds. The range of frequencies that humans can hear typically falls between 20 Hz to 20,000 Hz. High frequency sounds are generally above 2,000 Hz.
Humans can hear sounds within a frequency range of approximately 20 Hz to 20,000 Hz.