E= hf = hc/r in Joules.
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The measure of a photon's energy is proportional to its frequency, according to the equation E = h * f, where E is energy, h is Planck's constant, and f is frequency. Photons with higher frequencies have higher energy levels.
There is no direct conversion between photons and lumens as they are different units of measurement. Lumens measure the total quantity of visible light emitted by a source, while photons are individual quantum units of light energy. Lumens indicate the brightness of a light source, while photons measure the energy of individual light particles.
Photons carry electromagnetic energy.
The term for the small packets of energy emitted from light is called photons.
The measurement of light energy is typically quantified in terms of photons or lumens. Photons are discrete particles that make up light, while lumens measure the total amount of visible light emitted by a source. Different instruments and scales are used to measure light energy, depending on the specific property being quantified.
A photon's energy is determined by its frequency or wavelength, according to the equation E=hf, where E is energy, h is Planck's constant, and f is frequency. In general, higher frequencies (or shorter wavelengths) correspond to photons with higher energy.