Picture two protons. They are pulled together by the strong nuclear force (as long as
they are within range to start with.) But the electromagnetic force pushes them away
from each other, because they both have the same positive electric charge.
No. The strong nuclear force works through the exchange of a subatomic particle called a meson. Additionally, the strong nuclear force has to hold protons and neutrons together in the nucleus, so having a charge would have no effect on the neutrons.
The residual effect of the strong force, also known as the nuclear force, is the force that holds a nucleus together. It is constantly opposed by the electromagnetic force repelling the protons in the nucleus.
The opposite force to the strong nuclear force is the electromagnetic force. The strong nuclear force holds atomic nuclei together, while the electromagnetic force governs interactions between charged particles.
The two forces are the strong nuclear force and the electromagnetic force. The strong nuclear force acts to hold the nucleus together by overcoming the repulsive electromagnetic force between positively charged protons. This creates a delicate balance between the attractive strong nuclear force and the repulsive electromagnetic force, resulting in a "nuclear tug of war" within the nucleus.
Gravitational Electromagnetic Weak Nuclear Strong Nuclear
No. The strong nuclear force works through the exchange of a subatomic particle called a meson. Additionally, the strong nuclear force has to hold protons and neutrons together in the nucleus, so having a charge would have no effect on the neutrons.
The residual effect of the strong force, also known as the nuclear force, is the force that holds a nucleus together. It is constantly opposed by the electromagnetic force repelling the protons in the nucleus.
The strongest force known is called the "strong force" or "strong nuclear force".
The force of attraction between the protons and neutrons in the nucleus, known as the strong nuclear force, is responsible for binding these particles together. When a nucleus splits in a nuclear fission reaction, the strong nuclear force is overcome, releasing a large amount of energy.
The force between nucleons is called nuclear force.
The correct order of forces from weakest to strongest is gravitational force, electromagnetic force, weak nuclear force, and strong nuclear force. Gravitational force is the weakest force, while the strong nuclear force is the strongest.
a nuclear force that is stronger than normal
gravitational force electrostatic force weak nuclear force strong nuclear force
The four fundamental forces of nature are gravity, the electromagnetic force, the strong force (strong nuclear force or strong interaction), and the weak force(weak nuclear force or weak interaction).
The opposite force to the strong nuclear force is the electromagnetic force. The strong nuclear force holds atomic nuclei together, while the electromagnetic force governs interactions between charged particles.
-- gravity -- electrostatic force -- weak nuclear force -- strong nuclear force
a nuclear force that is stronger than normal