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Yes, a cool region underneath a cloud can have higher pressure than a region without cloud cover. This is because the cooling effect of the cloud can lead to a decrease in temperature and an increase in air density, which in turn can result in higher pressure at the surface.
Cloud cover is a noun. "Expect lots of cloud cover today."
The air in a cool region underneath cloud cover will have higher humidity compared to a region with no cloud cover. Clouds can trap moisture and prevent it from evaporating, leading to higher humidity levels beneath them.
Cloud cover typically indicates lower pressure, as it signifies moisture in the atmosphere which can lead to the development of precipitation. High pressure systems are associated with clear skies and generally less cloud cover.
A higher pressure than
A higher pressure than
A higher pressure than
A higher pressure than
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Yes, a cool region underneath a cloud can have higher pressure than a region without cloud cover. This is because the cooling effect of the cloud can lead to a decrease in temperature and an increase in air density, which in turn can result in higher pressure at the surface.
Pressure, wind direction, wind speed and cloud cover
Cloud cover is a noun. "Expect lots of cloud cover today."
Broken cloud cover refers to clouds covering between 5/8 to 7/8 of the sky, with distinct breaks in between. Scattered cloud cover refers to clouds covering between 3/8 to 4/8 of the sky, with more gaps and isolated cloud formations.
Cloud cover can reflect incoming solar radiation back into space, reducing the amount of energy that reaches the Earth's surface. This can lead to cooler temperatures. However, clouds can also trap heat emitted by the Earth, leading to warmer temperatures. Overall, the effect of clouds on the amount of incoming solar energy reaching the Earth's surface can vary depending on factors such as cloud type, altitude, and thickness.
The temperature of a region with cloud cover is lower than a region without cloud cover. This is due to the absorption of heat of the clouds and the reflection of the water molecules in the clouds of light that causes the heat in the region.