The air at the top of the mountain is less dense, meaning there are less particles of oxygen in a certain are than on the ground. It is harder to breathe because the air is so thin, there is not enough oxygen to breathe normally until you get used to it.
The atmospheric pressure will be greater at the base of the mountain because pressure decreases with increasing altitude due to the weight of the overlying air. This means that as you climb higher up a mountain, the pressure will decrease.
Temperatures decrease with altitude due to a decrease in air pressure as you go higher. This causes the air to expand and cool down, hence making it colder at the top of a mountain compared to the base.
The closer you are to the edge of the atmosphere, the denser air gets. That's why mountain climbers find it difficult to breathe, as there is less oxygen in the air up there.
No, the elevation of 20000 feet is measured from sea level, not from the base of the mountain. If you climb to the top of the mountain, you would be at the summit, but your elevation above the base of the mountain would be less than 20000 feet.
Air pressure is greatest at lower altitudes, such as at sea level, because there is more air above pushing down due to gravity. On top of a mountain, the air pressure is lower due to the reduced amount of air above. Similarly, above Earth's atmosphere, air pressure decreases significantly as altitude increases. Therefore, air pressure would be greatest at sea level, not on top of a mountain or above the atmosphere.
The air at the top of the mountain is thinner than the air at the base of the mountain. That is why you are harder breathing on the top than on the bottom.The gases are about the same, but there is usually a lot less water vapor (because its cold) :but the pressure is less (that is, the number of molecules per cubic foot is less), down to the point that on top of the tallest mountains humans can not survive for any appreciable time.
As you move from the base to the top of a mountain, the air pressure decreases. This is because the weight of the air above decreases with elevation. At higher altitudes, there are fewer air molecules above, resulting in lower pressure.
As a person moves from the base to the top of a mountain, the air pressure decreases. This is because there is less air above you at higher altitudes, resulting in lower pressure due to decreased atmospheric density.
The air pressure will decrease as the person moves from the base to the top of the mountain. This is because air pressure decreases with higher altitude due to the decreasing density of air molecules as elevation increases.
The summit of the mountain is at the top.
The air is usually very thin at the top of a mountain.
The change in elevation from the base of the mountain to the top is known as the mountain's elevation gain. It is calculated by subtracting the base elevation from the summit elevation.
Air pressure decreases as altitude increases, so at the top of a mountain, the air pressure is lower compared to the bottom of the mountain. This is because there is less air above pushing down on the air below at higher altitudes.
Because mountain is a higher and the air is top and right and left of a mountain.🙂
Wind is blowing air up over the mountain. Going from about 1,000 feet at the base to 7,000 feet at the top, the temperature changes as the air goes over the mountain.
At the top of the mountain you feel more colder than the normal temperature.
The air at the top of the mountain is going to be much less dense than the air at the bottom of the mountain because it is affected less by gravity.