The "strong nuclear force" does.
electromagnetic
electromagnetic
D. The strong nuclear force. This force is responsible for binding protons and neutrons together in the nucleus of an atom. Electromagnetic forces also play a role in holding electrons in orbit around the nucleus.
The strong nuclear force is responsible for binding protons and neutrons together in the nucleus of an atom. This force overcomes the electromagnetic force of repulsion between positively charged protons, helping to keep the nucleus stable.
Inside the nucleus of an atom, the primary forces at work are the strong nuclear force and the electromagnetic force. The strong nuclear force, which acts between nucleons (protons and neutrons), is the dominant force that holds the nucleus together, overcoming the repulsive electromagnetic force between positively charged protons. This strong force operates at very short distances, binding nucleons tightly within the nucleus. Additionally, the weak nuclear force plays a role in certain types of nuclear reactions, but it is not responsible for holding the nucleus together.
electromagnetic
electromagnetic
electromagnetic
Two main forces act in an atom, the electromagnetic force and the strong force. The electromagnetic force pulls the nucleus apart, while the strong force holds it together. Both neutrons and protons contribute to the strong force, but only protons contribute to the electromagnetic force. If an atom has too many protons and not enough neutrons, the electromagnetic force will overpower the strong force, and the nucleus will rip apart into more stable forms.
I'm not entirely sure but I'm pretty sure its electromagnetic force The primary force within the nucleus of an atom is the strong force. Also present is the weak force and the electromagnetic force.
The electromagnetic force. This is because the nucleus in the center of the atom is positively charged, whilst the electron is negatively charged, and an attractive force exists between them.
The cloud around an atom's nucleus is called an electron cloud. An electromagnetic force binds electrons inside an electrostatic potential well, which surrounds the nucleus.
The forces in the nucleus of a stable atom are the strong nuclear force and the electromagnetic force. The strong nuclear force holds the nucleus together by overcoming the electrostatic repulsion between positively charged protons. The electromagnetic force also plays a role in maintaining the stability of the nucleus.
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.
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.
D. The strong nuclear force. This force is responsible for binding protons and neutrons together in the nucleus of an atom. Electromagnetic forces also play a role in holding electrons in orbit around the nucleus.
strong nuclear force. The nucleus is held together by both the strong nuclear force and the weak nuclear force. The electron is bond to the nucleus by electro-static forces.