Well, isn't that an interesting question! The weight of the air in our atmosphere pressing down on Earth is about 14.7 pounds per square inch at sea level. It's like a gentle hug from nature, always surrounding us and keeping everything in balance. Just imagine all the beautiful landscapes and creatures that thrive under this gentle pressure.
Air pressure.
Question:What is a difference between a meteoroid and a meteorite?Answer:The difference between a meteoroid and a meteorite is that a meteoroid is a rock that is trapped by Earth's gravity and pulled down to Earth's atmosphere. As it falls it vaporizes. A meteoroid is also a rock that is trapped by Earth's gravity and pulled down to Earth's atmosphere but, does not vaporize completely and hits the ground.explain why m/s/s=m/s2
Air pressure
The strength of the force in each direction between the earth and any mass is called the "weight" of the mass. The force is equal in both directions, which means that the weight of the mass on earth is the same as the earth's weight on the mass. The force acts along the line between the center of the earth and the center of the mass. The direction toward the center of the earth is customarily referred to as the 'down' direction, and toward the center of the mass as the 'up' direction.
The air that surrounds our Earth makes up the atmosphere. Dry air contains roughly (by volume) 78.09% nitrogen, 20.95% oxygen, 0.93% argon, 0.039% carbon dioxide, and small amounts of other gases. Air also contains a variable amount of water vapor, on average around 1%.
Yes, air pressure is the weight of the atmosphere pressing down on Earth's surface due to the force of gravity pulling the air molecules towards the ground.
The weight of Earth's atmosphere pressing down in all directions is known as atmospheric pressure. It is due to the force exerted by the gases in the atmosphere as a result of the Earth's gravitational pull. Atmospheric pressure is essential for supporting life on Earth and plays a role in weather patterns and other natural phenomena.
Air pressure
We do not feel the weight of the atmosphere pressing down on us because our bodies are used to the constant pressure from the air around us. Our internal pressure matches the external pressure, so we don't perceive it as a sensation of weight.
The average air pressure at sea level is about 14.7 pounds per square inch (psi) or 101.3 kilopascals (kPa). This pressure is due to the weight of the air molecules in the Earth's atmosphere above us pressing down on our bodies.
The atmosphere exerts pressure on all objects and surfaces within it, including buildings, people, and the Earth's surface. This pressure is a result of the weight of air molecules above pressing down on objects below.
This is known as atmospheric pressure. Atmospheric pressure results from the weight of air above pressing down on the air below. It is a crucial component of Earth's atmosphere and plays a role in weather patterns and systems.
The force of the atmosphere pushing down on us is called atmospheric pressure. This pressure is caused by the weight of the air above us pressing down on the Earth's surface. On average, the atmospheric pressure at sea level is about 14.7 pounds per square inch (psi).
The force exerted by the weight of air is called atmospheric pressure. It is caused by the weight of the air molecules in the Earth's atmosphere pressing down on everything on the Earth's surface. Atmospheric pressure decreases with altitude as there are fewer air molecules above.
The weight of the air on Earth exerts a pressure known as atmospheric pressure, which averages around 14.7 pounds per square inch at sea level. This pressure is created by the weight of the air molecules in the Earth's atmosphere pressing down on the Earth's surface.
The air in the atmosphere presses on us due to the force of gravity pulling the air molecules towards the Earth's surface. This creates atmospheric pressure, which is the weight of the air above us pressing down on our bodies.
There is less weight pressing down from above as the distance toward the surface decreases.