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The higher energy peak represents two electrons (1 and 2), while the lower energy peak represents only one electron (3). The higher energy peak has a higher photoelectron intensity because it represents ejection and detection of two electrons.
What is electrons?
The electron, whose electric charge is one elementary charge less than zero, is a subatomic particle with a mass that is roughly 1836 times smaller than that of the proton. It has several quantum mechanical properties, including an intrinsic angular momentum (spin) of a type called the spin of a lepton, which is the first generation of the lepton particle family.
Since electrons are fermions, the Pauli exclusion principle states that no two electrons may be in the same quantum state. Since they can collide with other particles and can be diffracted like light, electrons, like all primary particles, display both wave and particle characteristics.
To learn more about electrons from the given link:
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