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  2. Humidity - Wikipedia

    en.wikipedia.org/wiki/Humidity

    Humid air is less dense than dry air because a molecule of water (m ≈ 18 Da) is less massive than either a molecule of nitrogen (m ≈ 28) or a molecule of oxygen (m ≈ 32). About 78% of the molecules in dry air are nitrogen (N 2). Another 21% of the molecules in dry air are oxygen (O 2). The final 1% of dry air is a mixture of other gases.

  3. Water vapor - Wikipedia

    en.wikipedia.org/wiki/Water_vapor

    This is largely because air temperatures over land drop more in the winter than temperatures over the ocean. Water vapor condenses more rapidly in colder air. [50] As water vapor absorbs light in the visible spectral range, its absorption can be used in spectroscopic applications (such as DOAS) to determine the amount of water vapor in the ...

  4. Cloud physics - Wikipedia

    en.wikipedia.org/wiki/Cloud_physics

    Since the saturation vapor pressure is proportional to temperature, cold air has a lower saturation point than warm air. The difference between these values is the basis for the formation of clouds. When saturated air cools, it can no longer contain the same amount of water vapor.

  5. Condensation - Wikipedia

    en.wikipedia.org/wiki/Condensation

    The amount of water vapor that can be stored in the air can be increased simply by increasing the temperature. [8] However, this can be a double edged sword as most condensation in the home occurs when warm, moisture heavy air comes into contact with a cool surface. As the air is cooled, it can no longer hold as much water vapor.

  6. Dew point - Wikipedia

    en.wikipedia.org/wiki/Dew_point

    The dew point is affected by the air's humidity. The more moisture the air contains, the higher its dew point. [4] When the temperature is below the freezing point of water, the dew point is called the frost point, as frost is formed via deposition rather than condensation. [5] In liquids, the analog to the dew point is the cloud point.

  7. Atmospheric thermodynamics - Wikipedia

    en.wikipedia.org/wiki/Atmospheric_thermodynamics

    Atmospheric thermodynamics is the study of heat-to-work transformations (and their reverse) that take place in the Earth's atmosphere and manifest as weather or climate. . Atmospheric thermodynamics use the laws of classical thermodynamics, to describe and explain such phenomena as the properties of moist air, the formation of clouds, atmospheric convection, boundary layer meteorology, and ...

  8. Convection cell - Wikipedia

    en.wikipedia.org/wiki/Convection_cell

    Warm air has a lower density than cool air, so warm air rises within cooler air, [2] similar to hot air balloons. [3] Clouds form as relatively warmer air carrying moisture rises within cooler air. As the moist air rises, it cools, causing some of the water vapor in the rising packet of air to condense . [ 4 ]

  9. Atmospheric convection - Wikipedia

    en.wikipedia.org/wiki/Atmospheric_convection

    Warm air has a lower density than cool air, so warm air rises within cooler air, [8] [better source needed] similar to hot air balloons. [citation needed] Clouds form as relatively warmer air carrying moisture rises within cooler air. As the moist air rises, it cools causing some of the water vapor in the rising packet of air to condense. [9]

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