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  1. London’s dispersion force < dipole-dipole < H-bonding < Ion-ion. So we can say that London dispersion forces are the weakest intermolecular force. London’s dispersion forces can be defined as a temporary attractive force due to the formation of temporary dipoles in a nonpolar molecule.

  2. 14 Ιουν 2023 · London dispersion forces can explain how liquids and solids form in molecules with no permanent dipole moment. "Dispersion" means the way things are distributed or spread out. Because the electrons move around a lot, sometimes they may move in a way that creates a temporary dipole moment.

  3. London dispersion forces (LDF, also known as dispersion forces, London forces, instantaneous dipole–induced dipole forces, fluctuating induced dipole bonds[1] or loosely as van der Waals forces) are a type of intermolecular force acting between atoms and molecules that are normally electrically symmetric; that is, the electrons are symmetrically...

  4. 4 Σεπ 2023 · The London dispersion force is a transitory attractive force that develops when electrons in two neighboring atoms retain positions that lead the atoms to form momentary dipoles. This force is also known as an induced dipole-induced dipole attraction.

  5. 22 Ιουν 2023 · Forces caused by the mutual instantaneous polarization of two molecules are called London forces, or sometimes dispersion forces. When referring to intermolecular forces in general, to either London or dipole forces or both, the term van der Waals forces is generally used.

  6. The London dispersion force is a temporary attractive force that results when the electrons in two adjacent atoms occupy positions that make the atoms form temporary dipoles. This force is sometimes called an induced dipole-induced dipole attraction.

  7. 1 Σεπ 2019 · London dispersion force is a weak intermolecular force between two atoms or molecules in close proximity to each other. The force is a quantum force generated by electron repulsion between the electron clouds of two atoms or molecules as they approach each other.

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