Q: What is the formula relating pressure and force to area?

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Pressure = force / area

Pressure =Force/Area

Pressure = Force/Area.

You might use the definition of pressure: pressure = force / area.

the formula for pressure is:Mathematically:P= F/A or P= dFn/ dAwhere:p is the pressure,F is the normal force,A is the area of the surface area on contactScientifically:p= F/A

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Pressure = (Force/Area)

The formula relating pressure, force, and area is: Pressure = Force / Area. This formula shows that pressure is directly proportional to force and inversely proportional to the area over which the force is distributed.

Pressure = force / area

Force F = Pressure x Area, F=PA

Pressure =Force/Area

Pressure depends on force and area. Pressure is the force applied perpendicular to the surface of an object per unit area. The formula for pressure is Pressure = Force/Area.

Pressure = Force/Area.

This is the formula for calculating force, as force equals pressure multiplied by area. Pressure is defined as force per unit area, so when you multiply pressure by area, you get the total force exerted.

The formula for vacuum force can be calculated as: Vacuum force = Pressure difference x Area Where the pressure difference is the difference in pressure between the vacuum and the surrounding atmosphere, and the area is the surface area over which the force is acting.

To find area, you can use the formula: pressure = force/area. Rearrange the formula to solve for area: area = force/pressure. Plug in the given force and pressure values to calculate the area.

Force divided by pressure is equal to the area over which the force is applied. This relationship is defined by the formula: Area = Force / Pressure. It describes how the force distributed over a given area affects the pressure exerted on that area.

To calculate the area from force and pressure, you can use the formula: Area = Force / Pressure. Simply divide the force applied by the pressure exerted on a surface to determine the area of contact. This calculation assumes a uniform distribution of force over the entire area.