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Water Pressure is higher because of it's molecular weight as compared to air.

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Why does water boils at lower temperatures than in a valley?

Water boils at lower temperatures at higher altitudes because the atmospheric pressure is lower. In a valley, the air pressure is greater, which allows water to reach a higher temperature before boiling. At higher altitudes, where the air pressure is lower, the boiling point of water decreases.


Why does air containing large amounts of water vapor have lower pressure than air that is dry?

Air with high water vapor content has lower pressure because water vapor molecules are less dense than nitrogen and oxygen molecules found in dry air. This results in fewer gas molecules per unit volume, leading to lower pressure.


Why does water boil at a lower temperature in denver than in dallas?

Water boils at a lower temperature in Denver compared to Dallas due to the difference in elevation. Denver is at a higher altitude, which means the air pressure is lower, resulting in water boiling at a lower temperature. This is because lower air pressure reduces the boiling point of water.


Why does water boil faster in the mountains than the city?

Water boils faster in the mountains because the air pressure is lower at higher altitudes. Lower air pressure reduces the boiling point of water, causing it to reach boiling temperature faster than at sea level where air pressure is higher.


Why if you boil water on a high mountain it will be lower than 100 degrees Celsius?

Because the air pressure is lower, and the boiling point of water (and other liquids) decreases as the pressure decreases.


Why does water have a different boiling point at elevation than at sea level?

Water boils at a lower temperature at higher elevations because the atmospheric pressure is lower. At higher elevations, the air is thinner, so there is less pressure pushing down on the water, causing it to boil at a lower temperature.


Why does water boils in high altitude area than lower lands?

Water boils at a lower temperature in high altitude areas because the atmospheric pressure is lower at higher elevations. The lower air pressure reduces the boiling point of water. This means that the water reaches its boiling point quicker, even though the temperature is lower than at sea level.


Why is the boiling point of water on top of a mountain than that it is at sea level?

The boiling point of water decreases at higher altitudes because the atmospheric pressure is lower. At lower pressure, molecules in the water can escape into the air more easily, requiring less heat to bring the water to a boil. This means that water will boil at a lower temperature on top of a mountain than at sea level.


When coastal land is warmer than the nearby water what type of breeze forms?

Along Coastlines, warmer air relates to lower air pressure, thus air flows from the higher-pressure, cooler setting into the area of lower air pressure. If the land is warmer, it has lower air pressure. Air over the sea would therefore be cooler and thus have higher atmospheric pressure, and the air will naturally from from the higher pressure (in this case, from over the ocean) to the lower pressure (over the warmer land).So you get a wind from the water onto the land, or a sea breeze.


Why Poes water on top of a mountain boil at a lower temperature than at sea level?

It is the effect of air pressure. The air pressure at the top of a mountain is less than the air pressure at sea level. The effect of air pressure on a water surface is to prevent or oppose water molecules escaping from the surface. The greater the air pressure, the more heat energy is needed to allow the water molecules to escape and so at sea level the water will boil at a higher temperature than if it were on top of a mountain.


When does water boil much less than 100?

When the pressure is reduced. Water only boils at 100 degrees Celsius when the air pressure is one atmosphere. So up a mountain, where the air pressure is lowered, water boils at a lower temperature.


Is air pressure inside a tornado is lower than outside a tornado?

The air pressure in a tornado is lower than that outside the tornado. That is why the wind blows toward the funnel.