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The air pressure is exerted in the direction of the air flow. But this is subjected to the Boyle's law. So Boyle's law is correct. You have add the force exerted by the speed of the air to it.
The measure of the force exerted by air molecules on a surface per unit area is air pressure.
In all directions.
Air pressure is exerted in all directions.
Air pressure is a push force. This force is exerted in all directions, pushing against objects in the atmosphere evenly.
Fluid pressure is exerted evenly in all directions due to the ability of fluid particles to easily move and distribute the force applied to them. When a force is applied to a fluid, it is transmitted equally in all directions as the fluid particles can freely move and transfer the force throughout the fluid. This results in an even distribution of pressure in all directions within the fluid.
Air pressure pushes outward in all directions, creating a force that acts perpendicularly to any surface it encounters. This is why we feel pressure equally on all sides of our bodies when in an atmosphere with air.
Air pressure is exerted in all directions equally. This means it pushes in every direction - up, down, sideways, and diagonally.
Pressure is the force applied per unit area. It is exerted in all directions on the surface of an object or substance, resulting in compression or deformation.
The force exerted on piston 2 will be equal to the force applied on piston 1, following Pascal's principle. This is because the pressure in a confined fluid is transmitted undiminished in all directions.
Air pressure is exerted equally in all directions because air molecules are constantly colliding with each other and the surfaces around them. This causes the pressure to spread evenly in all directions as the molecules move and bounce off surfaces. This balance of forces creates a uniform pressure distribution throughout a given volume of air.
Liquid exerts force in all directions due to its property of fluidity. This is known as hydrostatic pressure, which is the pressure exerted by a liquid at rest. The force is distributed evenly in all directions within the liquid.