Any wavelength longer than that of an electron would be too large for imaging. It follows that a shorter wavelength would have a larger energy.
Shorter wavelengths and higher frequencies are associated with more energy. Longer wavelengths and lower frequencies hence result in the production of lower energy.
The wavelength of a wave is the separation between its crests and troughs (which may be an electromagnetic wave, a sound wave, or any other wave). The peak of the wave is at its highest point, and its trough is at its lowest. A wavelength is stated in length units like meters, centimeters, milimeters, nanometers, etc. since it is a measurement of both length and distance.
It is well known that frequency, wavelength, and light speed are related. Three times 108 meters per second is the speed of light.
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