The frequency of a light wave can be calculated using the equation f = c/λ, where f is the frequency, c is the speed of light (3.00 x 10^8 m/s), and λ is the wavelength. Plugging in the values, the frequency of a 670 nm light wave is approximately 4.48 x 10^14 Hz.
The frequency of light emitted by a laser pointer with a wavelength of 670 nm can be calculated using the formula: frequency = speed of light / wavelength. Plugging in the values, we get frequency = 3x10^8 m/s / (670x10^-9 m) = 4.48x10^14 Hz.
Depends on what the speed of the wave is. The wavelength is equal to the speed of the wave divided by its frequency. For light in a vaccum, for instance, the speed is c, or about 3.00 x 10e8 meters/second. If the frequency was in Hertz (cycles/second), then the wavelength would be 448,000 meters. So, this probably is a light frequency. If it were the sound at sea level, the speed is 340 meters/second, so the resulting wavelength would be 0.507 meters. The sound would be nearly an "E".
The wavelength is 671 nm.
The frequency of the radiation can be calculated using the formula: frequency (Hz) = speed of light (m/s) / wavelength (m). Given that the speed of light is approximately 3.00 x 10^8 m/s, converting the wavelength from nanometers to meters (670nm = 670 x 10^-9 m) and plugging the values into the formula, the frequency would be approximately 4.48 x 10^14 Hz.
Frequency = (speed) / (wavelength)Wavelength = 700 nmFor speed of light, use 3 x 108 meters/secFrequency = (3 x 108) / (0.7 10-6) = 4.286 x 1014 Hz = 4.286 x 105 GHz
The frequency of light emitted by a laser pointer with a wavelength of 670 nm can be calculated using the formula: frequency = speed of light / wavelength. Plugging in the values, we get frequency = 3x10^8 m/s / (670x10^-9 m) = 4.48x10^14 Hz.
Depends on what the speed of the wave is. The wavelength is equal to the speed of the wave divided by its frequency. For light in a vaccum, for instance, the speed is c, or about 3.00 x 10e8 meters/second. If the frequency was in Hertz (cycles/second), then the wavelength would be 448,000 meters. So, this probably is a light frequency. If it were the sound at sea level, the speed is 340 meters/second, so the resulting wavelength would be 0.507 meters. The sound would be nearly an "E".
Use wavelength = frequency/300 000 with wavelength in metres and transpose.
670 / 109 = 6.15 (rounded to two decimal places).
The wavelength is 671 nm.
The frequency of the radiation can be calculated using the formula: frequency (Hz) = speed of light (m/s) / wavelength (m). Given that the speed of light is approximately 3.00 x 10^8 m/s, converting the wavelength from nanometers to meters (670nm = 670 x 10^-9 m) and plugging the values into the formula, the frequency would be approximately 4.48 x 10^14 Hz.
Frequency = (speed) / (wavelength)Wavelength = 700 nmFor speed of light, use 3 x 108 meters/secFrequency = (3 x 108) / (0.7 10-6) = 4.286 x 1014 Hz = 4.286 x 105 GHz
7.5x10^14 Hertz (cylces per second). Generally, wavelength = (speed of light)/(frequency). Speed of light can be rounded to 3x10^8. If you know one, you can get the other.
Approx 670 million mph.
80% of 670 = 80% * 670 = 0.8 * 670 = 536
23% of 670 = 23% * 670 = 0.23 * 670 = 154.1
670 meters equals 670 meters.