Yes the pressure at 3 Km from sea level is less than the pressure at 1 Km from sea level because air pressure becomes lower as the taken height above sea level increases. This is basically due to there being less weight upon each m^3 of air to press the air together.
As altitude increases, air pressure decreases. This is because the higher you go, the less air there is above you pressing down. The decrease in pressure with altitude follows a logarithmic pattern, with the rate of decrease slowing down the higher you go.
As altitude increases, air pressure decreases. This is because the weight of the air above becomes less as altitude increases, leading to lower air pressure. At higher altitudes, there are fewer air molecules pushing down on a given area, resulting in lower pressure.
Air pressure is influenced by altitude, temperature, and humidity. As altitude increases, air pressure decreases. Warmer air causes molecules to spread out, resulting in lower pressure, while colder air causes molecules to come together, leading to higher pressure. Humidity affects air pressure by altering the density of the air; humid air is less dense and exerts lower pressure than dry air.
As altitude increases, the rate of change of air pressure decreases. This is because the air becomes less dense at higher altitudes, leading to a more gradual decrease in pressure with increasing altitude.
Altitude has a large affect on the air pressure and air density. Air density reduces with altitude and air pressure reduces with altitude as well.
yes
Yes, air pressure decreases with increasing altitude. Therefore, the air pressure at 3 km would be lower than the air pressure at 1 km.
Altitude decreases, pressure increase, temperature decreases (some, but less effect than pressure), density goes up.
Yes, pressure decreases with altitude. As altitude increases, the air becomes less dense, resulting in lower atmospheric pressure.
Inversely with altitude, the higher up you go the less air pressure
the higher you are the more the density decreases
As altitude increases, air pressure decreases. This is because the higher you go, the less air there is above you pressing down. The decrease in pressure with altitude follows a logarithmic pattern, with the rate of decrease slowing down the higher you go.
Air pressure decreases as height is gained. There is less air pressure at the top of a high mountain, than at sea level.
Air pressure changes with altitude because as you go higher in the atmosphere, there is less air above pushing down on you. This results in lower air pressure at higher altitudes.
As altitude increases, air pressure decreases. This is because there is less air above pushing down on the air below, resulting in lower pressure at higher altitudes.
As altitude increases, air pressure decreases. This is because the weight of the air above becomes less as altitude increases, leading to lower air pressure. At higher altitudes, there are fewer air molecules pushing down on a given area, resulting in lower pressure.
Air pressure is influenced by altitude, temperature, and humidity. As altitude increases, air pressure decreases. Warmer air causes molecules to spread out, resulting in lower pressure, while colder air causes molecules to come together, leading to higher pressure. Humidity affects air pressure by altering the density of the air; humid air is less dense and exerts lower pressure than dry air.