3 ms·
I don't understand the question. Do you mean that the energy that carries each photon is quantized (when the energy state of the excited atom is quantized in o
by xcombinator 17y ago
I don't understand the question.
Do you mean that the energy that carries each photon is quantized (when the energy state of the excited atom is quantized in orbitals) and is inverse proportional to the wave length?
¿That is not radiation because it bounces a lot and don't penetrate?
If you use a lot more photons, you will have a very different effect that a single one.
Also, if you start making this devices, you will make it smaller and smaller and use less L on the inductances because it's more efficient, and that means use bigger frequencies, even microwaves( I heard they were using far radio in the first experiment), that are going to resonate with molecules bonds like ADN and stuff.
- CamperBob 17y agoIf you use a lot more photons, you will have a very different effect that a single one. No. You will not. That's exactly why I sent you to the library with that equation.