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Atmospheric Moisture. Water in the Atmosphere Water vapor is the source of all condensation and precipitation Essentially all water on Earth is conserved.

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Presentation on theme: "Atmospheric Moisture. Water in the Atmosphere Water vapor is the source of all condensation and precipitation Essentially all water on Earth is conserved."— Presentation transcript:

1 Atmospheric Moisture

2 Water in the Atmosphere Water vapor is the source of all condensation and precipitation Essentially all water on Earth is conserved – water cycle

3 Changes of State Changing states requires energy transfer in the form of heat Latent heat is the stored heat that needs to be added or removed for a phase change to occur

4 Phase changes requiring…. The addition of heat:  Melting  Evaporation  Sublimation – solid directly to gas The removal of heat  Freezing  Condensation  Deposition – gas directly to solid

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6 Humidity Saturation – the maximum quantity of water vapor air can hold at a given temperature and pressure Warm air can hold more water vapor than cool air

7 Relative Humidity (RH) Ratio of the air’s actual water vapor content compared with the amount of water air can hold at that temperature and pressure 2 ways to change RH  1. Add or remove water vapor  2. Change the temperature

8 Relative Humidity (RH) (cont.) Once air is saturated further cooling causes condensation (ex: dew, clouds) Measured using a sling psychrometer

9 Dew Point Dew Point –Temperature to which air would have to be cooled for saturation to occur Depends on how much moisture is present For every 10 C increase in temp. the amount of water vapor for saturation double  High dew points indicate moist air  Low dew point indicate dry air

10 Using RH and Dew point Dew point can found by using the RH  When air temp. and dew point are close: RH is high  When air temp. and dew point are far apart: Rh is low

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13 Explain this….. Explain the relationship between saturation, relative humidity and dew point.


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