The property of water demonstrated is surface tension, which causes the water molecules to stick together and form droplets on the surface of the waxed car hood rather than spreading out. This is due to the hydrophobic nature of the wax, which repels water.
The property demonstrated here is the commutative property of multiplication, which states that changing the order of the factors does not change the product.
water solvent salt solute
This scenario demonstrates the property of water called capillary action. Water is being drawn up into the celery stalk and its leaves due to the cohesive and adhesive forces between water molecules and the plant's tissues. This action allows water (and the blue dye in this case) to move through the plant's vascular system.
Sweat is a mixture of water, salts, and small amounts of other substances, such as urea.
Cohesion .
Cohesion .
Cohesion .
The surface tension of water.
The property being demonstrated is refraction, where light changes speed and direction as it travels from air to water due to the difference in the medium's refractive indices. This causes the pencil to appear bent or broken when viewed through the glass of water.
The property being demonstrated is surface tension. Water has a high surface tension due to the cohesive forces between its molecules, causing the needle, which is less dense than water, to float on the surface instead of sinking.
The property of water demonstrated is surface tension, which causes the water molecules to stick together and form droplets on the surface of the waxed car hood rather than spreading out. This is due to the hydrophobic nature of the wax, which repels water.
Identity property.
That would be a chemical property demonstrated by a chemical change.
Which property is demonstrated below? If t=s then s=t
The physical property demonstrated by a piece of styrofoam floating on water is called buoyancy. This is the upward force exerted by a fluid, such as water, that opposes the weight of an object placed in the fluid. Styrofoam is less dense than water, so it experiences a greater upward buoyant force than downward gravitational force, causing it to float.
The high specific heat capacity of water is responsible for the ability of sweat to lower body temperature. This property allows water to absorb a significant amount of heat before it evaporates, which helps remove heat from the body when sweat evaporates from the skin.