cohesion
Water molecules can make hydrogen bonds with other water molecules. Hydrogen bonds are the strongest type of intermolecular forces. This explains the high surface tension of water.
One is that the water molecule is polar. It has a positive and a negative side. The polar attraction of the molecules explains the surface tension of water.
The surface tension of water is due to cohesive forces between water molecules. Density does not directly affect surface tension, but impurities or additives can alter it. Essentially, the surface tension of water remains constant regardless of its density.
Yes, surface tension can change when bleach is added to water. Bleach is a surfactant that can reduce the surface tension of water by disrupting the hydrogen bonding between water molecules. This can lead to a decrease in surface tension and cause water to spread more easily.
capillary action is a common consequence of surface tension.
Water molecules can make hydrogen bonds with other water molecules. Hydrogen bonds are the strongest type of intermolecular forces. This explains the high surface tension of water.
One is that the water molecule is polar. It has a positive and a negative side. The polar attraction of the molecules explains the surface tension of water.
The surface tension of water is increased for salted water.Sodium chloride increase the surface tension of water.
A needle can float on water due to surface tension. When the needle is carefully placed on the surface of the water, its weight is not enough to break the surface tension created by the water molecules, causing it to float.
surface tension
The surface tension of water is higher than that of most other liquids. Water has a surface tension of 7.29 * 10-2 J/m2 at 20oC.
No, mercury has a higher surface tension.
The surface tension of water keeps the needle afloat. Water molecules at the surface create a cohesive force acting inward, allowing the needle to sit on top without sinking.
Surface tension is the tightness across the surface of water caused by the attraction between water molecules.
A water skipper is able to walk on water based on surface tension.
The surface tension of water is due to cohesive forces between water molecules. Density does not directly affect surface tension, but impurities or additives can alter it. Essentially, the surface tension of water remains constant regardless of its density.
it is when water molecules in the water form a 'wall'.Pond skaters have legs that spread out away from their bodies, lowering the pressure exerted by their weight and not breaking the surface tension of the water