A ionic compound
Ionic compounds are held together by electrostatic forces of attraction between positively charged cations and negatively charged anions. This attraction is due to the transfer of electrons from one atom to another, creating charged particles that are then attracted to each other.
The force that binds oppositely charged ions together is called electrostatic attraction. This force is due to the attraction between the positive and negative charges on the ions. It is responsible for holding ions together in ionic compounds.
Ionic compounds are held together by the electrostatic attraction between positively charged metal ions and negatively charged non-metal ions. This attraction results from the transfer of electrons from the metal to the non-metal, creating oppositely charged ions that are attracted to each other.
Lonci compounds are held together by ionic bonds. These bonds form due to the transfer of electrons from one atom to another, resulting in the attraction between positively and negatively charged ions. This strong electrostatic force holds the lonci compounds together in a stable crystal lattice structure.
Ionic compounds usually involve the transfer of electrons between a metal and a nonmetal atom, resulting in the formation of positively charged cations and negatively charged anions. These oppositely charged ions are held together by electrostatic forces to form a stable ionic lattice structure.
Electrostatic force of attraction between oppositely charged ions.
Electrostatic force is the force that exists between charged objects. The strength of this force depends on the amount of charge on the objects. The greater the charge, the stronger the electrostatic force between them.
covalent bond
Strong electrostatic force
Ionic/Covalent bonds. Covalent bonds are between non-metals and Ionic between a metallic and a non-metal. Metallic is between two metals but not sure whether this is a bond which holds ionic compounds together or not.
The ratio of the electrostatic force to the gravitational force between two electrons is approximately 2.4 x 1042.
Electrostatic force is inversely proportional to the square of the distance between two charges. This means that as the distance between the charges increases, the electrostatic force between them decreases. The relationship is described by Coulomb's law in physics.