A mountain top is higher (greater) in altitude. That is the definition of altitude : height above a surface, or above sea level.
Yes, a beach at sea level has greater air pressure than the top of a mountain. This is because air pressure decreases with altitude; as elevation increases, there is less atmosphere above exerting weight. Therefore, at sea level, the weight of the air column above is greater, resulting in higher pressure compared to that at higher elevations, such as the top of a mountain.
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.
No, the top of a high mountain located on the equator would not necessarily be hot. In fact, temperatures at high altitudes can be quite cold due to the decrease in atmospheric pressure and the corresponding decrease in temperature with altitude.
Air pressure is higher at sea level, such as over the ocean, than at the top of a mountain. This is because air pressure decreases with altitude, as there is less air above to exert pressure. Consequently, mountain tops experience lower air pressure compared to areas at or near sea level.
The observed temperature during distillation on top of a mountain would generally be lower than at sea level due to the decrease in atmospheric pressure with altitude. This would result in a lower boiling point for the liquid being distilled, potentially impacting the efficiency and rate of distillation. It is important to consider the atmospheric conditions and make adjustments to the distillation process to compensate for the lower boiling point.
At the top. "Altitude" means elevation or height above a surface, or above sea level.
The density of air is greater at ground level because of the weight of the air above pressing down. As you go higher in altitude, there is less air above exerting pressure, leading to lower air density at the top of a mountain.
Yes, a beach at sea level has greater air pressure than the top of a mountain. This is because air pressure decreases with altitude; as elevation increases, there is less atmosphere above exerting weight. Therefore, at sea level, the weight of the air column above is greater, resulting in higher pressure compared to that at higher elevations, such as the top of a mountain.
Air density is greater at the bottom of a mountain due to the higher atmospheric pressure caused by the weight of the air above. As you move higher up the mountain, the air becomes less dense because the pressure decreases with altitude.
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.
on the top of the mountain as pressure is greater so water will boil quicker
If the wet adiabatic lapse rate is 6 degrees per kilometer, the temperature decreases by 6 degrees for every kilometer gained in altitude. To find the temperature at the top of the mountain, you need to know the initial temperature at the base of the mountain and the altitude gained to the top of the mountain. Start with the base temperature and subtract 6 degrees for every kilometer of altitude gained.
Attending an altitude greater then that of a hill,a mountain is usually about greater than 2000 ft. (610m)Note that this does not necessarily mean altitude above sea level.
No, it is greater at the lower elevations.
it was built on top of a huge mountain at an anormous altitude by ancient Incan's.
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.
Breckenridge, Colorado has an altitude of 9,600 ft..