Examples of using Atomic nucleus in English and their translations into Spanish
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unlike all previous calculation which used functions only of the distance of the electron from the atomic nucleus, used functions which also explicitly added the distance between the two electrons.
can therefore often be absorbed more easily by an atomic nucleus, creating a heavier,
A nuclear reaction in which an atomic nucleus, especially a heavy nucleus such as an isotope of uranium,
the strong nuclear force is responsible for holding the units of the atomic nucleus together(protons and neutrons);
In the 1950s he researched nuclear reactions and the structure of the atomic nucleus, introducing the concept of the transformation parenthesis for functions of harmonic oscillation, which, together with the tables elaborated
Disintegration of atomic nuclei or any irradiation coming from ionising radiation;
Nuclear power comes from processes involving atomic nuclei.
They include the building blocks of protons and neutrons and atomic nuclei.
There are atomic nuclei a mile across that rotate thirty times a second.
This force must be strong enough to hold the atomic nuclei together but not so strong as to inhibit a star's chain reactions of nuclear reactions.
Step by step beam to beam or cosmic rays are protons and atomic nuclei that travel through the universe with near-light speeds.
A classic example is the calculation of the exterior multipole moments of atomic nuclei from their interaction energies with the interior multipoles of the electronic orbitals.
Atomic nuclei are ten thousand times smaller than the atoms they reside in, but they contain nearly
Normally the virtual energetic barrier is built by forces of atraction in the atomic nuclei.
while the gamma rays are produced during the radioactive decay of atomic nuclei.
At the 1978 summer school in Erice he proposed the existence of broken supersymmetry in atomic nuclei,[15] which has since been observed experimentally.
at the level of particles smaller than the ones in atomic nuclei.
The discipline dealing with electrons and atomic nuclei.
too dense for the electrons can be captured by atomic nuclei.