just like earth's revolution around sun , the cinterfigural force and the centerpetal force , however the center seeking force is due to electromagnatic attraction.
Holding electrons in orbit around atomic nuclei is an electric force of attraction between the positively charged protons in the nucleus and the negatively charged electrons. This force is known as the electromagnetic force and it keeps the electrons bound to the nucleus, creating stable atoms.
centrifugal force
The electromagnetic force binds electrons to nuclei to form atoms. This force is responsible for the attraction between the positively charged protons in the nucleus and the negatively charged electrons, leading to the stability of the atom.
False. Electromagnetic force.
Covalent bond
Electrons do not crash into the nucleus because they are constantly in motion and are held in orbit around the nucleus by the electromagnetic force. This force keeps the electrons at a certain distance from the nucleus, preventing them from colliding with it.
The electric force between the negatively charged electrons and the positively charged nucleus in an atom provides the centripetal force needed to keep electrons in orbit. This force balances the tendency of the electrons to move in a straight line due to their inertia, thus maintaining their circular motion around the nucleus.
The force that holds electrons around a nucleus is the electrostatic force of attraction between the positively charged nucleus and the negatively charged electrons. This force is known as the electromagnetic force and is responsible for keeping the electrons in orbit around the nucleus.
The force that attracts covalent bonds is the sharing of electron pairs between atoms. This sharing allows the atoms to achieve a more stable electron configuration. The shared electrons are attracted to the positively charged nuclei of both atoms, forming a strong bond.
Current is the motion of electrons in a conductor being propelled by electromotive force (voltage).
Electrons are attracted to the nucleus because of the electromagnetic force between the positively charged protons in the nucleus and the negatively charged electrons. This force of attraction keeps the electrons in orbit around the nucleus.
Objects in motion tend to remain in motion unless acted upon by an outside force. That the electrons stay in motion does not require energy under Newtonian physics, as the change in direction can be explained by the magnetic force exerted upon the electron by the proton. An answer from someone with a background in quantum physics might be different, but this one works for me.