jedishrfu said:
Actually, the important post in that thread is this one:
https://www.physicsforums.com/showpost.php?p=1585144&postcount=4
It is important to emphasize that solids as a whole behave very differently from single atoms or molecules. Solids, especially metals show reflection, but there is no reflection at at the subatomic level for single atoms or the like.
Reflection off metals (like in silver mirrors) usually work in terms of plasmons. Let me try to get this to a middle school level (some accuracy will be lost on the way of course): In metals, you have a lot of electrons which can move around quite freely. Electrons show some very interesting interactions with electromagnetic fields:
1) When some electromagnetic field is applied to them, they move.
2) When they accelerate, they also radiate an electromagnetic field.
Now light is a very rapidly oscillating electromagnetic field. As it hits a metal, the electrons will start to oscillate, too. So they will go back and forth. However, that also means, they are permanently accelerated and stopped again. That means that they will also radiate an electromagnetic field. The superposition of all of these fields radiated back again is the reflected light beam.
Note that there is a so-called plasma frequency. Depending on the material, there is a highest oscillation frequency the electrons can follow. If you want to "shake" them at higher frequency, they will not be able to follow. As the frequency of a light wave is correlated to its color, this gives a first hint at why some metals seem to shine in different colors.