The nuclear force energy is very strong. Their binding energy is also large.
All forces have direction and size.
The electroweak force is the unification of the electromagnetic force and the weak nuclear force, two of the four fundamental forces in nature.
There are four main forces in nature:* The gravitational force* The electric and magnetic forces (the two are closely related)* The strong force* The weak force
There are two forces responsible for radioactivity: the Strong nuclear force and the Weak nuclear force.
The two main forces in a star are gravity and nuclear fusion. Gravity pulls matter inward, compressing it and creating the high pressure and temperature needed for nuclear fusion to occur. Nuclear fusion releases energy as light and heat, which counteracts the force of gravity trying to collapse the star.
The two forces that act only over a very short range are the strong nuclear force and the weak nuclear force. The strong nuclear force binds protons and neutrons together within the nucleus of an atom, while the weak nuclear force is responsible for certain types of radioactive decay.
In physics, there are two main groups of forces: contact forces and non-contact forces. Contact forces require physical contact between two objects to occur, such as friction, tension, or normal forces. Non-contact forces, on the other hand, act at a distance and do not require direct contact, like gravity, electromagnetism, and nuclear forces.
strong nuclear forceweak nuclear forcegravity - however this is too weak to be worth considering inside the nucleus
it was a competition between two or more parties to have the best armed forces.
Well, two of the properties of space-time are electro-magnetic forces and gravity. I do not know the other two because I am only 9 years old.
The unified electroweak force is a combination of the electromagnetic force and the weak nuclear force, arising from the symmetry-breaking of these two forces at high energies. This force is mediated by carriers known as the W+, W-, and Z bosons. At lower energies, the electromagnetic and weak nuclear forces manifest as separate interactions.
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.