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Changes in State Phase Changes. Define freezing temperature in terms of observable and measurable characteristics. Construct and interpret heating and.

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Presentation on theme: "Changes in State Phase Changes. Define freezing temperature in terms of observable and measurable characteristics. Construct and interpret heating and."— Presentation transcript:

1 Changes in State Phase Changes

2 Define freezing temperature in terms of observable and measurable characteristics. Construct and interpret heating and cooling graphs from experimental data. Predict the ranking of normal freezing temperatures of a series of compounds, and explain reasons for the ranking.

3 Melting or Fusion  Solid is heated (energy is absorbed).  Energy is utilized to overcome IMFs.  Particles move more freely - liquid.  Characteristic Property (melting point) (s) (l)

4 (l) (g) There are two types of vaporization: evaporation and boiling (characteristic property) Vaporization  Energy is absorbed to break IMFs further  Even more particle freedom.  Gases form and escape.

5 Evaporation: particles on the surface of the liquid have enough energy to overcome the IMFs. Boiling - bubbles forming at the bottom and rising to the top where the vapour is released.

6 Particles on the surface have fewer IMFs than other particles.

7  Kinetic energy of the particles decreases as it cools.  Particles slow down, IMFs take hold.  Energy released to surroundings. (g) (l) Condensation

8 (l) (s)  Particles slow down even more.  IMFs increase and hold stronger.  Energy is lost to surroundings.  Particles arrange into the organized patterns. Freezing or Solidification

9 Sublimation Deposition (s) (g) (g) (s)

10 decrease particle motion increase Kinetic Energy increase IMFs decrease IMFs decrease Kinetic Energy increase particle motion


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