that would be dipole-dipole forces
Hydrogen bonding
The intermolecular bonds between water molecules are hydrogen bonds.
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Dispersion
i don't know kidding it means...........
Petroleum ether is a nonpolar molecule, so it primarily exhibits van der Waals forces such as London dispersion forces between its molecules. These forces arise from temporary fluctuations in electron distribution in the molecules, leading to weak attraction between them.
Hydrogen bonding
Intermolecular describes the interactions between separate molecules.
A volatile liquid is easy to vaporize because there are weak intermolecular attractions between its molecules. A nonvolatile liquid is difficult to vaporize because there are strong intermolecular attractions between its molecules.
The strongest intermolecular force between two molecules of water in ice is hydrogen bonding.
Yes, the vapor pressure decreases as the strength of intermolecular forces between molecules increases.
Intermolecular spaces refer to the empty spaces or gaps between molecules in a substance. These spaces determine the physical properties of the substance, such as density and compressibility. The size of intermolecular spaces can affect how closely packed molecules are in a material.
The most important intermolecular force in C2H6, ethane, is London dispersion forces. These are temporary dipoles created by the shifting of electron clouds, which allow for weak attractions between molecules.
The intermolecular bonds between water molecules are hydrogen bonds.
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When water evaporates, intermolecular bonds between water molecules are broken, not intramolecular bonds within the water molecule itself. The intermolecular bonds that are broken are hydrogen bonds between water molecules, allowing them to separate and become a gas.
In acetic acid, the most important intermolecular force is hydrogen bonding. This is because acetic acid molecules contain a hydrogen bonded to an electronegative oxygen atom, creating strong hydrogen bonds between neighboring molecules.