Gravity causes air to be denser near Earth's surface.
One way to cause air to be denser near Earth's surface is to increase the air pressure by applying a force from above, such as with the weight of a heavier mass of air. This can happen in areas of high pressure systems or when air is descending, compressing and increasing its density. Additionally, lower temperatures can also contribute to denser air near the surface.
Convection within Earth's atmosphere is primarily driven by the unequal heating of the Earth's surface by the sun. As air near the surface is heated, it becomes less dense and rises, creating an upward flow. As the heated air rises, it cools, becomes denser, and eventually sinks back towards the surface, completing the convection cycle that helps drive weather patterns.
Sedimentary rocks are the type of rocks that can only form on or very near Earth's surface. Sedimentary rocks form from weathering processes that occur on Earth's surface.
Yes air is denser near the earth's surface than high in the atmosphere. The farther up air rises, there are less molecules of air between the outer edges of the atmosphere. This means there is a lot less air weighing down. A general rule of thumb is the higher the altitude, the lower the pressure: the lower the altitude, the higher the pressure.
Yes, Earth's gravity pulls objects towards its center. The force of gravity between Earth and objects on or near its surface causes everything to be pulled towards the center of the planet.
One way to cause air to be denser near Earth's surface is to increase the air pressure by applying a force from above, such as with the weight of a heavier mass of air. This can happen in areas of high pressure systems or when air is descending, compressing and increasing its density. Additionally, lower temperatures can also contribute to denser air near the surface.
extrusive because it forms on or near earths surface
Volcanoes.
It decreases as you move away from the earth surface
It is the Trajectory.
They are condense.
air pressure is the highest near the earths surface
the tectonic platesthe tectonic plates can be move to be far and near to each other
High pressure at the surface
Near plate boundaries.
Force (newtons) = mass (kg) * acceleration (m/s/s) > Acceleration at earths surface radius = 9.82 m/s/s
I am sure that if you think about the problems encountered by climbers on Mount Everest you might be able to answer that yourself. Near the Earth's surface.