Covalent bond
The intermolecular force in acetone (CH3COCH3) is dipole-dipole interaction. This is because acetone contains a carbonyl group that creates a partial negative charge on the oxygen atom and a partial positive charge on the carbon atom, leading to attraction between different acetone molecules.
This is an intermolecular force.
The force between difluorine molecules is a London dispersion force, which is a type of weak intermolecular force caused by temporary fluctuations in electron distribution.
Dimethyl ether exhibits dipole-dipole interactions as the main intermolecular force. It also experiences weak London dispersion forces.
Intermolecular attraction
Intramolecular forces are not intermolecular forces !
The intermolecular force in acetone (CH3COCH3) is dipole-dipole interaction. This is because acetone contains a carbonyl group that creates a partial negative charge on the oxygen atom and a partial positive charge on the carbon atom, leading to attraction between different acetone molecules.
Hydrogens Bonds
Covalent bonds
Acetone exhibits dipole-dipole interactions as its dominant intermolecular force. This is due to the polar nature of the acetone molecule, which contains a carbonyl group. Additionally, acetone can also experience weak van der Waals forces such as London dispersion forces.
The intermolecular force in Ar (argon) is London dispersion forces, which are the weakest type of intermolecular force. This force is caused by temporary fluctuations in electron distribution around the atom, leading to temporary dipoles.
In pure water, the primary intermolecular force is a hydrogen bond, which is a specific type of dipole-dipole intermolecular force with notably more energy than most dipole-dipole intermolecular forces.
No. A covalent bond acts solely within a molecule.An intermolecular force acts between two or more separate molecules
London forces, dipole attractions and hydrogen bonding are some of the examples for intermolecular attractions in the order of increasing strength.
London Force / van der Waals force
This is an intermolecular force.
The force between difluorine molecules is a London dispersion force, which is a type of weak intermolecular force caused by temporary fluctuations in electron distribution.