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Electron bombardment is a process where neutral atoms are converted to positive ions by bombarding them with electrons. Electrons are knocked off the atoms when fast moving electrons collide with them, forming positive ions.
Q:What happens when quarks and anti-quarks collide?A: They explode, same with protons and anti-protons, neutrons and anti-neutrons, electrons and positrons.
When a neutron star is formed, protons and electrons are crushed, they collide and become neutrons.
when lightning strikes it splits the electrons in the atmosphere in 2. They automaticly atract and when they collide to form back into a electron it creates thunder.
Yes, free electrons can collide with atoms.
electrons are in orbits protons are in nucleus an electron keeps revolving in the orbit because of force of attraction but this electron cannot come into the nucleus where proton and neutron reside.
The electromagnetic force (protons are positive and electrons are negative, so they attract), which is manifested into Coulomb's force of attraction. The reason that electrons will not fall into the nucleus is due to the electron's energy; it is moving fast enough to not collide with the nucleus.
this becos an increase in temp causes the immobile electrons to collide with the conductin electron thereby incresing resistance since conductivity is reduced
They do attract, but they will not collide because the probability of finding an electron in the nucleus approaches zero as the distance from the nucleus approaches zero.
They can and they do, when outside an atom. Within an atom, it does not happen because each electron is within a very specific orbital that makes collisions impossible.
Raise its energy level by light absorption, making it collide with another atom or electron, or heating it up.
The energy of a vibrating electron that does not collide with neighboring atoms has energy that is emitted as light. The energy will be radiated away.