The nuclear force is stronger than the electromagnetic force at very short distances, within the nucleus of an atom. However, the electromagnetic force is dominant at longer distances and is responsible for interactions between charged particles.
The nuclear force is stronger than the electromagnetic force. The nuclear force holds particles in the nucleus together, overcoming the repulsion between positively charged protons. The electromagnetic force is responsible for interactions between charged particles, but it is weaker at short distances compared to the nuclear force.
The electromagnetic force is approximately 1036 times stronger than gravity.
The strongest of the four fundamental forces is the strong nuclear force, which is responsible for holding atomic nuclei together. It is stronger than the electromagnetic force, weak nuclear force, and gravitational force.
The strong nuclear force is responsible ofmaintainingprotons and neutrons within the nucleus (its range is short) while the electromagnetic force is responsible of maintaining the electrons around the nucleus.
No, it is attractive. The strong nuclear force, as it is known, is what overcomes the coloumbic repulsion of the positively charged protons, which would otherwise tend to fly apart due to the electromagnetic force (like charges repulse).
The nuclear force is stronger than the electromagnetic force. The nuclear force holds particles in the nucleus together, overcoming the repulsion between positively charged protons. The electromagnetic force is responsible for interactions between charged particles, but it is weaker at short distances compared to the nuclear force.
Nuclear weapons take their energy from the Strong Nuclear force that holds the atomic nucleus together.Conventional weapons take their energy from the Electromagnetic force that holds electrons in orbitals around the atomic nucleus.The Strong force is a couple thousand times stronger than the Electromagnetic force.
The electromagnetic force is approximately 1036 times stronger than gravity.
a nuclear force that is stronger than normal
The strongest of the four fundamental forces is the strong nuclear force, which is responsible for holding atomic nuclei together. It is stronger than the electromagnetic force, weak nuclear force, and gravitational force.
a nuclear force that is stronger than normal
The strong nuclear force is responsible ofmaintainingprotons and neutrons within the nucleus (its range is short) while the electromagnetic force is responsible of maintaining the electrons around the nucleus.
No, it is attractive. The strong nuclear force, as it is known, is what overcomes the coloumbic repulsion of the positively charged protons, which would otherwise tend to fly apart due to the electromagnetic force (like charges repulse).
The strong nuclear force is the force that holds the nucleus together. This force is one of the four fundamental forces of nature and is responsible for binding protons and neutrons in the nucleus. It is a short-range force that is stronger than the electromagnetic force at nuclear distances.
The force binding the nucleus of an atom is the strongest fundamental force in nature. There are four fundamental forces in nature. These are the electromagnetic force gravity, the strong nuclear force, and the weak nuclear force. Of these, the strong nuclear force, which binds together the nucleons (neutrons and protons) of atoms, is by far the strongest. It is over 100 times as strong as the electromagnetic force, which, in turn, is far stronger than gravity or the weak nuclear force.
Strong nuclear force is the force that keeps the protons and neutrons in the nucleus of an atom. Being stronger than the electromagnetic force at very close distances, the strong nuclear force prevents the protons from repelling. Even more fundamentally, the strong nuclear force binds quarks together, which are the fundamental constituents of protons and neutrons.
The "strong force" which binds nucleons (protons and neutrons) together was traditionally considered the strongest force. It is much stronger than the other three traditional forces: the weak force; the electromagnetic forces; gravitation. With the more recent research on quarks, however, it seems that this strong force is just a side effect of an even stronger force that acts between quarks.