The wavelength of the light sensor is 15.23 × 10^ -7.
E = h c / λ
[tex]1.30 * 1.6 * 10^{-19} = 6.6 * 10^{-34} * 3 * 10 ^ {8}/[/tex] λ
λ = 15.23 *[tex]10^{-7[/tex]
What is a photon?
We are aware that photons have their own energy. The wavelength has no bearing on the amount of energy because the energy is inversely proportional to the electromagnetic frequency of the photon.
The photon's energy will be high if its frequency is high. Therefore, we can conclude that a photon's energy is lower if its wavelength is longer.
We can claim that a more powerful red light than a less intense blue light can deliver more power to a certain location. We are aware that photon energy is measured in joules and electron volts (eV).
The equation E=hf describes the photon's energy.
where E is the energy of a photon, h is Planck's constant, and f is the electromagnetic frequency.
The given equation holds true for a single photon. E = n* h* f is the formula for the number of photons that are emitted when there are more than n photons.
Depending on the unit system being used, energy is measured in Joules or electron volts (eV).
Joules equal 6.24 x 1018 eV.
The large units aid in describing the photon energy with higher energy and frequency for radiations like gamma rays.
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