sea level
At sea level, atmospheric pressure would be greatest because of the weight of the entire column of air above that point. As you move higher up a mountain, atmospheric pressure decreases due to the lower column of air above. However, at the outer edge of the atmosphere, the pressure drops significantly as there is almost no air present in this region.
Atmospheric pressure decreases with increasing altitude because the weight of the air above a given point decreases as you move higher in the atmosphere. At sea level, there is a greater column of air pressing down, resulting in higher pressure. As you ascend, there is less air above you, leading to lower pressure. Therefore, atmospheric pressure is greater at sea level compared to higher 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.
As altitude above seal level increases, atmospheric pressure decreases.
0,61 Earth AtmosphereThis however is an average, which means there will be places and times where the pressure is higher or lower.The existence of winds implicates regions of higher and lower pressure.Furthermore, there are on Earth pockets of gas underground with higher pressure. The same phenomenon is expectable on Mars.
Atmospheric pressure is higher at sea level than on a mountaintop. This is because atmospheric pressure decreases with altitude; as you ascend, there is less air above you exerting downward force. Consequently, the air is less dense at higher elevations, resulting in lower pressure.
because they bang each other alot.
Because it is duhhh
The answer is sea level. Because atmospheric pressure decreases when altitude increases
At sea level, atmospheric pressure would be greatest because of the weight of the entire column of air above that point. As you move higher up a mountain, atmospheric pressure decreases due to the lower column of air above. However, at the outer edge of the atmosphere, the pressure drops significantly as there is almost no air present in this region.
When the water level is higher inside the flask than outside, the gas pressure in the flask would be lower than the atmospheric pressure. This is because the water exerts a partial vacuum on the gas in the flask, reducing its pressure compared to the external atmospheric pressure.
Atmospheric pressure is highest at sea level, where the weight of the air above exerts the greatest force. Consequently, you would expect higher atmospheric pressure near low-lying regions like sea level and lower pressure at higher altitudes.
water at sea level has higher vapor pressure
Because in the mountaintop the pressure is lower than in the sea level; I think.
Atmospheric pressure decreases with increasing altitude because the weight of the air above a given point decreases as you move higher in the atmosphere. At sea level, there is a greater column of air pressing down, resulting in higher pressure. As you ascend, there is less air above you, leading to lower pressure. Therefore, atmospheric pressure is greater at sea level compared to higher elevations.
the atmospheric pressure below sea level is highter (novanet)
When the water level is higher inside than outside the flask, the gas pressure in the flask is lower than the atmospheric pressure. This is because the weight of the column of water inside the flask creates an additional pressure on the gas inside, reducing its pressure relative to the atmospheric pressure outside.