No gravitational forces are implicated.
There is a stronger gravitational force acting among the particles of a uranium nucleus compared to the nucleus of helium. This is because uranium has more mass than helium.
There is a stronger gravitational force acting among the particles of a uranium nucleus compared to the nucleus of helium. This is because uranium has more mass than helium.
Since there is more mass in the uranium nucleus, there would be a proportionally stronger gravitational force in the uranium nucleus. However, the gravitational force is the weakest force, and it is followed in scale by the weak atomic force, the electromagnetic force, and the strong atomic force, which are many orders of magnitude greater, so, in effect, the gravitational force does not even count in the vicinity of the nucleus.
Neither, the strength of the gravitational force between the subatomic particles inside nuclei is negligible compared to the strength of both the weak nuclear force or the strong nuclear force between the same subatomic particles inside those nuclei.
The nucleus contains protons and neutrons, which are collectively known as nucleons. Protons have a positive charge, while neutrons are neutral. These particles are further comprised of quarks, which are elementary particles that make up protons and neutrons.
Every nucleus (except for Hydrogen) consists of protons and neutrons. The hydrogen nucleus is only a proton.
Protons and neutrons are subatomic particles found in the nucleus of atoms (with the exception of hydrogen atoms, which have no neutrons).
the particles in the nucleus are Neutrons
In a Hydrogen nucleus there is a proton. Hydrogen is the only element to not have a neutron in it's nucleus.
Protons are similar to hydrogen ions because they are positively charged particles found in the nucleus of an atom. Hydrogen ions are just protons that are not associated with an electron.
Atoms are made from three basic particles: protons, neutrons and electronsNeutron and protons make up nucleus. Electrons revolve around the nucleus
Proton therapy uses protons, which are positively charged subatomic particles found in the nucleus of an atom. Hydrogen atoms, which consist of a single proton in their nucleus, are commonly used as the source of protons in proton therapy.