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Chemical bonding, any of the interactions that account for the association of atoms into molecules, ions, crystals, and other stable species that make up the familiar substances of the everyday world. The polarity of a bond is the distribution of electrical charge over the atoms joined by the bond. What happens to chemical bonds when a chemical reaction takes place
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According to the modern view of chemical reactions, bonds between atoms in the reactants must be broken, and the atoms or pieces of molecules are reassembled into products by forming new bonds. There are three main properties of chemical bonds that must be considered—namely, their strength, length, and polarity This article begins by describing the historical evolution of the current understanding of chemical bonding and then discusses how modern theories of the formation of chemical bonds have emerged and developed into a powerful description of the structure of matter.
Chemical bonds and intermolecular forces are jointly responsible for the existence of the solid phases of matter
This section reviews some of the types of solid that are encountered and relates them to the topics discussed earlier. For full treatment, see chemical bonding Molecules that have covalent linkages include the inorganic substances hydrogen, nitrogen, chlorine, water, and ammonia (h 2, n 2, cl 2, h 2 o, nh 3) together with all organic compounds. Bonds formed by electron sharing between atoms are called covalent bonds
The electrons are shared rather than transferred, because the two nonmetal atoms have comparable attractive powers for the electrons in the bond. To understand bond formation, it is necessary to know the general features of the electronic structure of atoms—that is, the arrangement of electrons around the central nucleus. The formation of ionic bonds