wavelength in exametres to wavelength in nanometres
Please provide values below to convert wavelength in exametres to wavelength in nanometres [nm], or change ↔.
wavelength in exametres
Definition: The wavelength of a wave in units of exametres (1E18 m).
Historyandorigin: Exametres are extremely large and used for theoretical applications in high-frequency research.
CurrentUse: Not commonly used due to the extraordinarily high value, but useful for certain theoretical wave propagation studies.
funfact: Exametres measure incredibly long wavelengths, much longer than those typically encountered in practical use!
wavelength in nanometres [nm]
Definition: The wavelength of a wave in units of nanometers (1E-9 m).
Historyandorigin: Nanometres are common for light-based wavelength measurements.
CurrentUse: Used in optics and the study of light, especially ultraviolet and visible spectrums.
funfact: Nanometres are used for some of the most detailed work in microscopy, as well as measuring the light emitted by lasers!
wavelength in exametres to wavelength in nanometres [nm] Conversion Table
1 wavelength in exametres | 1.E+27 wavelength in nanometres [nm] |
2 wavelength in exametres | 2.E+27 wavelength in nanometres [nm] |
3 wavelength in exametres | 3.E+27 wavelength in nanometres [nm] |
5 wavelength in exametres | 5.E+27 wavelength in nanometres [nm] |
10 wavelength in exametres | 1.E+28 wavelength in nanometres [nm] |
50 wavelength in exametres | 5.E+28 wavelength in nanometres [nm] |
100 wavelength in exametres | 1.E+29 wavelength in nanometres [nm] |
1000 wavelength in exametres | 1.E+30 wavelength in nanometres [nm] |
10000 wavelength in exametres | 1.E+31 wavelength in nanometres [nm] |
100000 wavelength in exametres | 1.E+32 wavelength in nanometres [nm] |
1000000 wavelength in exametres | 1.E+33 wavelength in nanometres [nm] |
How to Convert wavelength in exametres to wavelength in nanometres
1 wavelength in exametres = 1.E+27 wavelength in nanometres [nm]
1 wavelength in nanometres [nm] = 1.E-27 wavelength in exametres
we use cross multiplication method
wavelength in exametres → wavelength in nanometres [nm]
1 → 1.E+27
1.5 → ?( suppose x)
=>1.5*1.E+27=1*x
by simplifying
x=1.5E+27