You didn't specify what kind of wave. Use the relationship: speed = frequency x wavelength.
You didn't specify what kind of wave. Use the relationship: speed = frequency x wavelength.
You didn't specify what kind of wave. Use the relationship: speed = frequency x wavelength.
You didn't specify what kind of wave. Use the relationship: speed = frequency x wavelength.
The wavelength of a frequency is the propagation speed divided by the frequency. A wave of 146 MHz, with a propagation speed of 3x108 m/s (speed of light), has a wavelength of 3x108 divided by 146x106, or about 2 m.
Assuming a propogation speed of 3x108 m/s (approximate speed of light), a frequency of 106.5 MHz would have a wavelength of about 2.8 m.
Wavelength = Speed of light/frequency Wavelength= 300'000'000/104'900'000 (FM 104.9 is frequency modulation 104.9 MHz) Wavelength=2.86 meters
Wavelength = (speed) / (frequency) = (3 x 108) / (249 x 106) = 1.205 meters (rounded)
What is the wave length of 100 Hz? Answer You mean a sound wave in air. At a temperature of 20 degrees Celsius or 68 degrees Fahrenheit there is the speed of sound c = 343 meters per second. For a tone of f = 100 Hz the wavelength is lambda = c / f = 343 / 100 = 3.43 meters.The equation for the relationship between wavelength and frequency is X = frequency * wavelength, where X = the speed of the particle. For light, the wavelength of 100 Hz is 2.99 E8 cm, and for sound, the wavelength is 60 m.
Wavelength is calculated in MHz not Hz, and the formula is Wavelength = 300 / MHz
The station with 107.1 MHz would have the longer wavelength.
The wavelength of a 99.0 MHz signal is about 9.94 feet.
The shorter wavelength is kaja at 97.3 MHz. This is because wavelength is inversely proportional to frequency, so the higher the frequency, the shorter the wavelength. Woalat at 1200 kHz has a longer wavelength compared to kaja at 97.3 MHz.
{| ! | FM: 97.7 MHz - 99.7 MHz |}
For 90.7 MHz: λ = about 10.84 feet.
10 mhZ
Divide 300 by 2,500,000,000 to get a wavelength of 0.00000015 metres. Wavelength metres = 300 / f(mHz) = 300 / 2500 mHz = 0.12 metres. (2.5 gHz = 2500 mHz)
300 MHz: λ = about 3.278 feet.
The wavelength can be calculated using the formula: wavelength = speed of light / frequency. At a frequency of 900 MHz (900 x 10^6 Hz), the wavelength would be approximately 0.333 meters (333 mm) in free space.
The frequency of a 150 meter radio wavelength can be calculated using the formula: frequency = speed of light / wavelength. For a 150 meter wavelength, the frequency would be approximately 2 MHz (megahertz).
The wavelength for a frequency of 25 MHz is approximately 12 meters. Wavelength can be calculated using the formula: Wavelength = Speed of light / Frequency.