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Attractive forces may exist between particles in molecular crystals such as dipole-dipole interactions, hydrogen bonds, and London dispersion forces.
Molecular crystals are materials that have distinctly vulnerable intermolecular binding, which include dry ice (solidified carbon dioxide), stable varieties of noble gases (e.g., argon, krypton, and xenon), and crystals of numerous natural compounds.
Molecular crystals have low melting (Tm) and boiling (Tb) points as compared to steel (iron), ionic (sodium chloride), and covalent solids (diamond). Examples of molecular solids with low melting and boiling temperatures include argon, water, naphthalene, nicotine, and caffeine (see desk under).
Molecular crystals are substances that have especially weak intermolecular binding, along with dry ice (solidified carbon dioxide), strong sorts of noble gases (e.g., argon, krypton, and xenon), and crystals of numerous organic compounds.
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