How matter changes forms

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Presentation transcript:

How matter changes forms State Changes How matter changes forms

What is energy? Energy is the ability to do work or cause change. Endothermic – energy is absorbed Exothermic – energy is released

Kinetic Energy Kinetic Energy is the energy of motion Particles with a lot of kinetic energy move fast and far apart Particles with little kinetic energy move slow & close together Particles with a lot of kinetic energy Particles with little kinetic energy

Thermal Energy The total kinetic energy of all the particles in a sample of matter is called thermal energy.

Temperature Temperature is the average kinetic energy of the individual particles in a substance So… if it is hot more kinetic energy, if cold less kinetic energy.

Heat The movement of thermal energy from a substance at a higher temperature to one at a lower temperature is called heat.

Changing states Matter can change from one state to another when thermal energy is released or absorbed. This is called a change of state.

State Change Pyramid Gas Liquid Solid Absorbing Releasing thermal energy Releasing thermal energy Gas Liquid Solid

State Change Pyramid Gas Liquid Solid Melting Absorbing Releasing thermal energy Releasing thermal energy Gas Melting Liquid Solid

Melting The change from the solid state to the liquid state is melting. The temperature at which a substance changes from a solid to a liquid is called the melting point. Melting is when matter absorbs thermal energy, and its temperature rises.

State Change Pyramid Gas Liquid Solid Melting Freezing Absorbing thermal energy Releasing thermal energy Gas Melting Freezing Liquid Solid

Freezing The change from the liquid state to the solid state is called freezing. The temperature at which a substance changes from the liquid state to the solid state is called the freezing point. Energy is released during freezing. After all of the liquid has become a solid, the temperature begins to decrease again.

State Change Pyramid Gas Liquid Solid Vaporization Melting Freezing Absorbing thermal energy Releasing thermal energy Gas Vaporization Melting Freezing Liquid Solid

Vaporization The change from a liquid to a gas is known as vaporization. The temperature of the substance does not change during vaporization. However, the substance absorbs thermal energy.

Vaporization Two forms of vaporization exist. Vaporization that takes place below the surface of a liquid is called boiling. The temperature at which a liquid boils is called the boiling point. Vaporization that takes place at the surface of a liquid is called evaporation.

Evaporation Evaporation, which occurs at temperatures below the boiling point, explains how puddles dry up. It takes more than speed for water molecules to escape the liquid state. During evaporation, these faster molecules also must be near the surface, heading in the right direction, and they must avoid hitting other water molecules as they leave.

State Change Pyramid Gas Liquid Solid Condensation Vaporization Absorbing thermal energy Releasing thermal energy Gas Condensation Vaporization Melting Freezing Liquid Solid

Condensation As a gas cools, its particles slow down. When particles move slowly enough for their attractions to bring them together, droplets of liquid form. This process, which is the opposite of vaporization, is called condensation.

State Change Pyramid Gas Liquid Solid Condensation Sublimation Absorbing thermal energy (endothermic) Releasing thermal energy (exothermic) Gas Condensation exothermic Sublimation endothermic Deposition exothermic Vaporization endothermic Melting endothermic Freezing exothermic Liquid Solid

Sublimation Some substances can change from the solid state to the gas state without ever becoming a liquid. During this process, known as sublimation, the surface particles of the solid gain enough energy to become a gas. Picture from http://www.ehow.com/how_2098268_fogsmoke-dry-ice-halloween.html

Deposition Some substances can change from the gas state to the solid state without ever becoming a liquid. During this process, known as deposition, the surface particles of the gas release enough energy to become a solid.