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The strong force binds protons and neutrons together in the nucleus of an atom, overcoming the electromagnetic repulsion between positively charged protons. The weak force is involved in certain types of radioactive decay, such as beta decay. The strong force is stronger than the weak force in the context of holding particles together within an atomic nucleus.

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What two competing fundamental forces are at work inside the nucleus of an atom?

The two competing fundamental forces inside the nucleus of an atom are the strong nuclear force, which holds protons and neutrons together, and the electromagnetic force, which causes positive charges (protons) to repel each other. The strong nuclear force overcomes the electromagnetic force at close distances, keeping the nucleus stable.


How is proton proton attraction is possible?

Proton to Proton attraction is not possible due to the electromagnetic force. Opposites attract. Inside the nucleus protons do not repel from each other because of the strong force. Lets take an Oxygen atom for example, it has eight protons inside its nucleus, this means that the force that is between them (a repelling force) is massive but that is where the neutrons come in. Neutrons basically contain a particle that is called the "gluon", this particle is what emits the strong force that is keeping the nucleus together. The strong force is extremely strong but does not have a very big range because of it did it would bring the electrons towards the nucleus. The strong force is what is keeping the nucleus together and is keeping the protons from repelling each other. This is also the reason why there are as many (and more in isotopes) neutrons as there are protons.


Is gravity a strong force?

Gravity is considered a weak force compared to other fundamental forces like electromagnetism or the strong nuclear force. However, gravity is unique in that it has an infinite range and always acts to attract objects with mass. Despite being considered weak on the scale of particles, gravity dominates on larger scales such as planetary and galactic bodies.


How does gravity compare and contrast to the strong force of nuclear energy?

Gravity is a weak force that acts over long distances, attracting masses towards each other. The strong nuclear force, on the other hand, is much stronger but operates only at very short distances inside the atomic nucleus to hold protons and neutrons together. Gravity is a universal force that affects all objects with mass, while the strong force is specific to interactions within atomic nuclei.


Why is one force called the strong force and the other one called the weak force?

The strong force is the strongest of the four forces, around 100 times stronger than the electromagnetic force. There's no other reason for the name. Similarly, the weak force is weak in comparison to the strong force and electromagnetism. It is, however, much stronger than gravity. These forces are named in contrast to each other because they are both observed at the atomic scale; physicists saw two "nuclear forces" and described one as weak and one as strong. Needless to say, they were rather less imaginative than the people who named gravity and electromagnetism.


What does electrostatic force do inside the nucleus?

It causes the protons in the nucleus repel each other.


Why do protons and electrons stay near each other?

Protons repel each other electrically. However, there is another force that counteracts that: the strong force (or "residual strong force") that acts between nucleons (protons and neutrons). Note that two protons alone can't stick together; but if there are also a few neutrons, the strong force becomes dominant.Protons repel each other electrically. However, there is another force that counteracts that: the strong force (or "residual strong force") that acts between nucleons (protons and neutrons). Note that two protons alone can't stick together; but if there are also a few neutrons, the strong force becomes dominant.Protons repel each other electrically. However, there is another force that counteracts that: the strong force (or "residual strong force") that acts between nucleons (protons and neutrons). Note that two protons alone can't stick together; but if there are also a few neutrons, the strong force becomes dominant.Protons repel each other electrically. However, there is another force that counteracts that: the strong force (or "residual strong force") that acts between nucleons (protons and neutrons). Note that two protons alone can't stick together; but if there are also a few neutrons, the strong force becomes dominant.


Why don't protons push each other out of the cell?

because they are jack asses


Why is the strong nuclear in an atom?

As you may know, there is the electromagnetic force which basically states that opposites attract and that equals repel. This means that the protons would repel each other inside the nucleus thus destroying the nucleus. The strong force is the force that is emitted by the gluons in the neutrons to keep the protons from repelling and destroying the nucleus. It is extremely strong but that reason for which it does not bring the electrons towards the nucleus is because it has a very short range.


Is oak considered a strong wood in comparison to other types of wood?

Yes, oak is considered a strong wood compared to other types of wood due to its durability and density.


How do you use strong force?

If you mean the strong force, you can't (yet) - it is the force that holds the nucleus of an atom together. The strong force is explained as a force bringing very close together similarly charged particles that should normally repulse each other, and is thus incredibly strong (the strongest of the 4/3/2 fundamental forces of the universe).


Which three of the four forces in nature have been unified?

Weak force, strong force, and electromagnetic force. The other one is gravity.