Just divide the speed of light - c - by the wavelength.
So it's 2.99792458 x 108 / 4.86 x 10-7 and the answer is in Hz.
The frequency of light with a wavelength of 700 nm can be calculated using the equation: frequency = speed of light / wavelength. The speed of light is approximately 3.00 x 10^8 m/s. Converting the wavelength to meters (700 nm = 700 x 10^-9 m), you can calculate the frequency.
The frequency of light with a wavelength of 15 nm is approximately 2 x 10^16 Hz. The energy of light with this wavelength is about 80.6 electronvolts.
The frequency of light with a wavelength of 656 nm can be calculated using the formula: frequency = speed of light / wavelength. Speed of light is approximately 3.0 x 10^8 m/s. This gives a frequency of about 4.57 x 10^14 Hz.
Using the formula: frequency = speed of light / wavelength, where the speed of light is approximately 3.00 x 10^8 m/s, the frequency of light with a wavelength of 410 nm is approximately 7.32 x 10^14 Hz.
The wavelength is 671 nm.
The frequency of light with a wavelength of 700 nm can be calculated using the equation: frequency = speed of light / wavelength. The speed of light is approximately 3.00 x 10^8 m/s. Converting the wavelength to meters (700 nm = 700 x 10^-9 m), you can calculate the frequency.
The frequency of light with a wavelength of 15 nm is approximately 2 x 10^16 Hz. The energy of light with this wavelength is about 80.6 electronvolts.
The frequency of blue light is approx. 450 nm
The frequency of light with a wavelength of 656 nm can be calculated using the formula: frequency = speed of light / wavelength. Speed of light is approximately 3.0 x 10^8 m/s. This gives a frequency of about 4.57 x 10^14 Hz.
Using the formula: frequency = speed of light / wavelength, where the speed of light is approximately 3.00 x 10^8 m/s, the frequency of light with a wavelength of 410 nm is approximately 7.32 x 10^14 Hz.
The wavelength is 671 nm.
The frequency of red light with a wavelength of 700 nm can be calculated using the formula: frequency = speed of light / wavelength. Plugging in the values (speed of light = 3.00 x 10^8 m/s), we get a frequency of approximately 4.29 x 10^14 Hz.
The "Balmer Series" includes the visible spectrum of light from hydrogen ... fourwavelengths, 410 nm, 434 nm, 486 nm, and 656 nm, that correspond to emissionsof photons by electrons in excited states transitioning to the quantum level describedby the principal quantum number n equals 2. (There are also a number of ultravioletBalmer lines with wavelengths shorter than 400 nm.)Of the four visible Balmer lines, the one with the longest wavelength ... 656 nm ...is the one with the lowest energy per photon. It appears quite red.
Apex - 467 nm
416 nm
The frequency of infrared light typically ranges from about 300 GHz to 400 THz. To convert this frequency to a wavelength in nanometers, you can use the formula: wavelength (in nm) = speed of light (in nm/s) / frequency (in Hz), where the speed of light is approximately 3 x 10^8 meters/second.
Frequency is equal to constant divided by wavelength. 3.00x108 / 780nm equals approximately 4397435897.4359 hertz.