The wavelength of a 250 Hz sound wave in air is approximately 1.4 meters. Wavelength is calculated by dividing the speed of sound in air (about 343 meters per second) by the frequency of the wave.
we know the equation V=nLv=speed of wave n=frequency L=wavelength here v=? n=250Hz & L=1.2 v=250*1.2 =300m/s
speed = wavelength * frequency wavelength = 102 meters frequency = 250 Hz = 250 cycles/second 102 * 250 = 25500 meters/second
wavelength. This is because frequency and wavelength have an inverse relationship, meaning as frequency increases, wavelength decreases. This relationship is described by the equation speed = frequency x wavelength, where speed is the speed of light in a vacuum.
There are probably several equations that involve wavelength. One that is quite common is:speed = wavelength x frequency
The frequency of a wavelength is inversely proportional to its wavelength. This means that as the wavelength increases, the frequency decreases, and vice versa. This relationship is described by the formula: frequency = speed of light / wavelength.
The speed of a wave is its wavelength (λ) x frequency (ƒ).v = 땃 = 1.2m x 250Hz = 300m/s
we know the equation V=nLv=speed of wave n=frequency L=wavelength here v=? n=250Hz & L=1.2 v=250*1.2 =300m/s
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speed = wavelength * frequency wavelength = 102 meters frequency = 250 Hz = 250 cycles/second 102 * 250 = 25500 meters/second
The period is the reciprocal of the frequency, in this case, 1/250 second.
Wavelength = (wave speed)/(frequency) .The speed of sound is influenced by the density of the material it's traveling through.If that's air, it depends on the temperature, humidity, pressure, altitude, suspendedparticulate matter, etc. Whatever the speed of the sound happens to be, thewavelength of a 250 Hz sound will be (speed, units per second)/(250) units.A typical speed of sound in sea-level air is around 340 meters per second. At thatspeed, the wavelength of the same sound is340/250 = 136 centimeters
What Wavelength
wavelength = velocity/ frequency wavelength = 330/256 wavelength = 1.29 (to 3 sig fig) 1.30
wavelength. This is because frequency and wavelength have an inverse relationship, meaning as frequency increases, wavelength decreases. This relationship is described by the equation speed = frequency x wavelength, where speed is the speed of light in a vacuum.
There are probably several equations that involve wavelength. One that is quite common is:speed = wavelength x frequency
The frequency of a wavelength is inversely proportional to its wavelength. This means that as the wavelength increases, the frequency decreases, and vice versa. This relationship is described by the formula: frequency = speed of light / wavelength.