Energy wavelength and frequency equation
26 nosler encore barrel
where f represented the frequency of oscillation and h is Planck's constant, 6.63 x 10-34 J sec. In our case, f is the frequency of the emitted photon in accordance with c = fλ. If we replace f with c/λ, we have the formula
As a wave, it is characterized by a velocity (the speed of light), wavelength, and frequency. When considered as particles, they are known as photons , and each has an energy related to the frequency of the wave given by Planck's relation E = hν , where E is the energy of the photon, h = 6.626 × 10 -34 J·s is Planck's constant, and ν is the frequency of the wave.