What is the difference between dipole induced dipole interactions and London dispersion forces?

Dipole-induced dipole interaction is between a permanent dipole in a molecule and a dipole it induces in another molecule whereas London dispersion forces are between instantaneous dipoles and their induced dipoles. As a result, polar molecules can attract or repel each other depending on how they are oriented.Click to see full answer. Also question is,…

Dipole-induced dipole interaction is between a permanent dipole in a molecule and a dipole it induces in another molecule whereas London dispersion forces are between instantaneous dipoles and their induced dipoles. As a result, polar molecules can attract or repel each other depending on how they are oriented.Click to see full answer. Also question is, is induced dipole the same as London dispersion?The London dispersion force is the weakest intermolecular force. 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.One may also ask, are London dispersion forces stronger than dipole dipole? Dipole-dipole forces are stronger than London forces in small molecules. In larger molecules, London forces tend to be stronger than dipole-dipole forces (even stronger than hydrogen bonds). Correspondingly, how are dispersion forces similar to dipole dipole interactions? London dispersion forces: A weak intermolecular interaction arising from induced instantaneous dipoles in molecules; part of the Van der Waals forces. dipole: Any molecule that has both slight positive and negative charges on either end.What is the difference between dipole dipole interactions and hydrogen bonding?A dipole-dipole force is when the positive side of a polar molecule attracts the negative side of another polar molecule. A hydrogen bond is a dipole-dipole force and is an attraction between a slightly positive hydrogen on one molecule and a slightly negative atom on another molecule.

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