Приклади вживання A photon Англійська мовою та їх переклад на Українською
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then that last leap, to a photon itself.
Each time we add a photon, the complexity of the problem we are able to solve increases exponentially,
Ionized stuff is extremely good at interacting with radiation(it has a high"cross-section" for scattering a photon), whereas neutral material is almost transparent.
by a single quantum of light(called a photon) which has an energy equal to the energy difference between the two orbitals.
When a photon of light enters the layers of«n»
Kipping's work is based on a slightly different orbit that steers a photon emitted from a spacecraft around the black hole and back to the spacecraft- a kind of boomerang orbit.
by a single quantum of light(called a photon) which has an energy equal to the difference in energy between the two orbits.
However, the atom has to lose energy to do this, and so it releases a photon of the same energy as the one it absorbed(albeit most likely into some other direction from which it was absorbed).
as a bunch of photons, and a photon hits an electron in a certain energy state,
by a single quantum of light(called a photon) which has a frequency that directly depends on the energy difference between the two orbitals.
Conceptually, the idea is to not just put a photon into a superposition of going through two slits at once,
because of the heat temperature, if a photon is released it will be immediately absorbed by something else.
is introduced: for example, a photon is represented by a wavy line, an electron by a solid line.
Suppose we start with one electron at a certain place and time(this place and time being given the arbitrary label A) and a photon at another place and time(given the label B).
For those who do not know what a Photon Light particle is,
However, under certain conditions each of the photons may turn into a photon consisting of 4 phantom Po particles(photon-4), whereas photon-4 may turn into photon-3.
the electron absorbs a photon, is transferred from the valence band to the conduction band.
sooner or later the atom will encounter a photon with an energy that is just the right amount to jump the electron up to the next higher energy level.
Each time we add a photon, the complexity of the problem we are able to investigate increases exponentially,
According to its state, a photon may perform functions either of a power particle(photon-3)a carrier of information about the elementary particle with which it interacts.">