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No. Fluids move away from areas of high pressure and toward areas of low pressure.
Fluids tend to move toward low pressure areas.
A high pressure area is usually an area that is being cooled, making the air move toward the ground. It gradually moves away from the high pressure area toward a low pressure area.
No. Winds move away from a high pressure center and towards a low pressure center. You can think of it as the low pressure sucking the air in.
Energy or matter move from high potential to low potential. This case the high pressure mean there is more air in its' volume so it expand toward those spot with lesser air than its' volume. For example, low pressure front may due to the heat cause air volume to expand. The air then move up due to its' buoyancy and that cause the low pressure. The colder and denser air is then draft toward those low pressure front.
In the southern hemisphere, the air in the high pressure system moves anticlockwise.
Air.
high to low
Air in the atmosphere tends to move toward low-pressure regions, which would increase the winds surrounding a hurricane. Air in the atmosphere moves from areas of high pressure to areas of low pressure. Air rushing toward a hurricane causes the hurricane to grow in size and strength.
The 30 degree latitude area is at the high pressure region developed by the sinking air from the Hadley Cell created by the low pressure rising air at the equator. Winds move from high to low pressure areas. The doldrums are located at the equator, this is a low pressure area. When the air sinks at the 30 degree latitude air moves away from the 30 toward the equator and 60 degree latitudes. Since air does not move toward the 30, there is no way to bring the maritime air masses to those desert areas.
air moves from areas of high pressure to low pressured areas. therefore the pressure makes air masses to move around the equator. but where in areas where the pressure difference is small then the air mass doesnt move it becomes stationary.
No, it does not.