kinetic energy
locked up in hexagon shaped framework, in three dimensions, small space between these six molecules, giving ice a slighly lower density than liquid water. water molecules are hydrogen bonded together
Particles with high kinetic energy can move fast enough to overcome nearly all the attraction between them. This can occur in situations such as in a gas at high temperature or in a plasma, where the particles have enough energy to move freely and independently of each other.
Evaporation occurs when the molecules at the surface of a liquid gain enough energy to overcome the intermolecular forces holding them in the liquid phase. This energy is typically acquired from heat, allowing these molecules to escape into the gas phase. As a result, the remaining liquid may cool down due to the loss of higher-energy molecules.
When liquid molecules absorb enough heat energy, evaporation occurs.
Molecules in a liquid must overcome intermolecular forces before they can evaporate. The molecules must also be moving in the right direction and located near the surface in order for evaporation to occur.
Technically, the molecules are close together and vibrate in place. They do not stay move fast enough to overcome the attraction between them.
Technically, the molecules are close together and vibrate in place. They do not stay move fast enough to overcome the attraction between them.
the force of attraction between its molecules becomes strong enough to overcome the energy of motion that its molecules have when the substance is in its liquid state, molecules are locked into rigid crystalline formations.
liquid
It is, but the lif generated by its wings is strong enough to overcome that attraction.
locked up in hexagon shaped framework, in three dimensions, small space between these six molecules, giving ice a slighly lower density than liquid water. water molecules are hydrogen bonded together
Particles with high kinetic energy can move fast enough to overcome nearly all the attraction between them. This can occur in situations such as in a gas at high temperature or in a plasma, where the particles have enough energy to move freely and independently of each other.
Evaporation occurs when the molecules at the surface of a liquid gain enough energy to overcome the intermolecular forces holding them in the liquid phase. This energy is typically acquired from heat, allowing these molecules to escape into the gas phase. As a result, the remaining liquid may cool down due to the loss of higher-energy molecules.
During evaporation, a liquid turns into a gas or vapor by gaining energy from its surroundings. The molecules of the liquid gain enough energy to overcome the attraction forces holding them together in the liquid state. As they gain energy, the molecules move more rapidly and eventually break free into the surrounding environment as a gas.
Solids are made up of molecules which have more intermolecular attraction. So these molecules are held together closely. But in case of liquids the inter molecular attraction less. So there is inter molecular space between the molecules. They are not very close to one another. When the inter molecular attraction between the molecules is lost or reduced the solids turn into liquids. When the solid is heated because of the heat the kinetic energy of the molecules is increased and the molecules start moving away from each other. So the inter molecular attraction is lost or reduced. So the solid turns into liquids.
When water is hot enough, the motion of the individual water molecules is fast enough to overcome the attraction that water molecules have for each other, which results in their escape from the liquid into the gas phase.
When liquid molecules absorb enough heat energy, evaporation occurs.