At higher altitudes, the air pressure decreases due to lower atmospheric density. This decrease in air pressure leads to a lower concentration of oxygen molecules available. Consequently, there is less oxygen available for breathing on the top of a mountain.
No, it is greater at the lower elevations.
Atmospheric pressure decreases as you go from the top of a mountain to sea level. This is because there is less air above you at higher altitudes, leading to lower pressure. Conversely, at sea level, more air is pressing down from above, resulting in higher atmospheric pressure.
the shape of a dome volcano is like an triangle
Well mainly pressure against the flame WHEN YOU BLOW IT: Well when you put air pressure aginst the flame it causes it to go out PUT SOMETHING ON TOP: Well when you put somehting on top(such as a metal candle burner) it puts pressure against the flame...it aventually burns out
It decreases. Air pressure is simply the pressure of all the other air on top of it. As you increase in elevation, there is less air on top of you. Therefore, the air pressure is less. As your altitude decreases, there is more air on top of you, therefore, the air pressure increases. Same with water. As you descend, water pressure increases. More on top of you.
There is more air pressure at a beach compared to the top of a mountain. Air pressure decreases with increasing altitude, so the air pressure at the top of a mountain is lower than at sea level like a beach.
The top of a mountain has lower air pressure, not greater air pressure, compared to lower elevations. This is because the higher you go in elevation, the thinner the atmosphere becomes, leading to lower air pressure due to decreased atmospheric density.
== == Mount Mitchell in NC. 6,684 ft (2,037 m) The following make out the top three. Mount Craig in North Carolina 6,647 ft (2,026 m) Clingmans Dome in Tenn. 6,643 ft (2,025 m)
There is lesser air pressure on top of the wing when lift occurs. This is due to the shape of the wing causing the air to move faster over the top surface, resulting in lower air pressure according to Bernoulli's principle.
Hot air rises
The air pressure at the top of our heads is the same as the air pressure at any other point at the same elevation above sea level. The air pressure decreases with increasing altitude due to the weight of the air above pushing down on the air below, creating the atmospheric pressure we experience.
On top of a mountain
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The top of a mountain has low air pressure because the higher you go up in altitude, the fewer air molecules there are above you, resulting in lower pressure. This is because gravity pulls air molecules towards the Earth's surface, leading to higher concentration of molecules at lower altitudes.
yes
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.