The ability of like molecule to attract is called cohesive force
Cohesive force is the attractive force between like molecules. Cohesive forces are also known as intermolecular forces and can also be repulsion forces.
The lines in a structural formula represent the chemical bonds. These bonds are attractive forces between atoms that allow the formation of chemical substances.
Valence forces refer to the attractive and repulsive forces that act between atoms to form chemical bonds. These forces include ionic, covalent, and metallic bonding interactions that help hold atoms together in molecules or crystal structures. Valence forces determine the physical and chemical properties of substances.
The attraction between the two are called ionic forces or ionic bonds.
The lines in a structural formula represent the chemical bonds. These bonds are attractive forces between atoms that allow the formation of chemical substances.
The lines in a structural formula represent the chemical bonds. These bonds are attractive forces between atoms that allow the formation of chemical substances.
Adhesive forces are the attraction between molecules of different substances. This differs from cohesive forces which is attraction between same substances.
At room temperature, the greatest attractive forces exist between particles of solids because the particles are closely packed together and have strong intermolecular forces such as Van der Waals forces or hydrogen bonding.
London dispersion forces or Van der Waahls forces
Substances dissolve in a solvent when the attractive forces between the solute and solvent molecules are stronger than the forces holding the solute together. Substances sink or float in a fluid based on their density compared to the density of the fluid. If the substance is less dense than the fluid, it will float, and if it is more dense, it will sink.
gravity, no jk
A main difference between gravitational and electric forces is that electrical forces can be either attractive or repulsive, depending on the charges of the interacting objects, while gravitational forces are always attractive and proportional to the masses of the objects involved. Additionally, electric forces can be shielded by conducting materials, whereas gravitational forces cannot be shielded in the same way.