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States of Matter, Lesson 2 Changes in State October 28, 2011.

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Presentation on theme: "States of Matter, Lesson 2 Changes in State October 28, 2011."— Presentation transcript:

1 States of Matter, Lesson 2 Changes in State October 28, 2011

2 Energy Kinetic energy: energy due to motion Faster = higher kinetic energy List the states of water in order from lowest kinetic energy to highest ______, ______, ______ Temperature: measure of average kinetic energy How do changes in temperature relate to changes in kinetic energy and vice versa?

3 Energy, cont. Potential energy: stored energy due to interactions between particles (ex. gravity) Increases when particles are further apart Decreases when particles are closer together

4 Energy, cont. Thermal energy: total potential and kinetic energy of an object Matter changes state by adding or removing thermal energy + thermal energy  inc. kinetic (particles move faster) and inc. potential (particles further apart) - thermal energy  ___ kinetic (particles move ______) and ____ potential (particles _______)

5 Comprehension check Describe the relationship between kinetic energy, potential energy and thermal energy. A: kinetic energy + potential energy = thermal energy

6 Changes in state (6 of them) Melting Solid to liquid Thermal energy added Melting point = temp at which solid turns to liquid

7 Freezing Liquid to solid Thermal energy removed Freezing point: temp at which liquid turns solid

8 Vaporization Liquid to gas Thermal energy added Boiling: vaporization in a liquid Boiling point: temp at which liquid turns to gas Evaporation: vaporization at the surface of a liquid

9 Condensation Gas to liquid Thermal energy removed

10 Sublimation Solid directly to gas Thermal energy added Ex. dry ice (solid carbon dioxide)

11 Deposition Gas directly to solid Thermal energy removed Ex. frost

12 Comprehension check Distinguish between changes in state that require the addition of thermal energy from those that require the removal of thermal energy.

13 EXIT PASS Differentiate between sublimation and deposition in terms of thermal energy.


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