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Pressure when force and area are given Solution

STEP 0: Pre-Calculation Summary
Formula Used
pressure = Force/Area
P = F/A
This formula uses 2 Variables
Variables Used
Force - Force is any interaction that, when unopposed, will change the motion of an object. In other words, a force can cause an object with mass to change its velocity. (Measured in Newton)
Area - The area is the amount of two-dimensional space taken up by an object. (Measured in Square Meter)
STEP 1: Convert Input(s) to Base Unit
Force: 2.5 Newton --> 2.5 Newton No Conversion Required
Area: 50 Square Meter --> 50 Square Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
P = F/A --> 2.5/50
Evaluating ... ...
P = 0.05
STEP 3: Convert Result to Output's Unit
0.05 Pascal --> No Conversion Required
FINAL ANSWER
0.05 Pascal <-- Pressure
(Calculation completed in 00.016 seconds)

11 Other formulas that you can solve using the same Inputs

Diagonal of a Rectangle when breadth and area are given
diagonal = sqrt(((Area)^2/(Breadth)^2)+(Breadth)^2) Go
Diagonal of a Rectangle when length and area are given
diagonal = sqrt(((Area)^2/(Length)^2)+(Length)^2) Go
Side of a Kite when other side and area are given
side_a = (Area*cosec(Angle Between Sides))/Side B Go
Work
work = Force*Displacement*cos(Angle A) Go
Torque
torque = Force*Displacement*sin(θ) Go
Impulse
impulse = Force*Time Taken to Travel Go
Surface Tension
surface_tension = Force/Length Go
Buoyant Force
buoyant_force = Pressure*Area Go
Perimeter of a square when area is given
perimeter = 4*sqrt(Area) Go
Diagonal of a Square when area is given
diagonal = sqrt(2*Area) Go
Stress
stress = Force/Area Go

11 Other formulas that calculate the same Output

Modified pressure equation for cylindrical blast wave
pressure = [BoltZ]*Freestream density*(sqrt(pi/8))*Diameter*(sqrt(Drag Coefficient))*(Freestream Velocity^2/Distance from X-axis) Go
New pressure after the shock formation for compression wave
pressure = density ahead of shock*(1+((Specific Heat Ratio-1)/2)*(Normal velocity/Old speed of sound))^(2*Specific Heat Ratio/(Specific Heat Ratio-Time)) Go
Pressure for the cylindrical blast wave
pressure = Boltzmann constant 1*Freestream density*((Energy/Freestream density)^(1/2))/(Time) Go
formula For creation pressure for the planar blast wave
pressure = [BoltZ]*Freestream density*((Energy/Freestream density)^(2/3))*(Time)^(-2/3) Go
Pressure when density and height are given
pressure = Density*Acceleration Due To Gravity*Height Go
Pressure during retraction
pressure = Force/(Area of piston-Area of piston rod) Go
Pressure when Resultant is Outside Middle Third
pressure = 2*Total downward force on soil/(3*middle third distance) Go
Pressure of the liquid entering the motor
pressure = Theoretical torque/Theoretical volumetric displacement Go
Pressure
pressure = (1/3)*Density of Gas*(Root mean square velocity)^2 Go
Pressure in Excess of Atmospheric Pressure
pressure = (specific weight of liquid)*(Height) Go
Pressure exerted
pressure = Force/Area of piston Go

Pressure when force and area are given Formula

pressure = Force/Area
P = F/A

How to Calculate Pressure when force and area are given?

Pressure when force and area are given calculator uses pressure = Force/Area to calculate the Pressure, Pressure when force and area are given is defined as the physical force exerted on an object with given force and area. Pressure and is denoted by P symbol.

How to calculate Pressure when force and area are given using this online calculator? To use this online calculator for Pressure when force and area are given, enter Force (F) and Area (A) and hit the calculate button. Here is how the Pressure when force and area are given calculation can be explained with given input values -> 0.05 = 2.5/50.

FAQ

What is Pressure when force and area are given?
Pressure when force and area are given is defined as the physical force exerted on an object with given force and area and is represented as P = F/A or pressure = Force/Area. Force is any interaction that, when unopposed, will change the motion of an object. In other words, a force can cause an object with mass to change its velocity and The area is the amount of two-dimensional space taken up by an object.
How to calculate Pressure when force and area are given?
Pressure when force and area are given is defined as the physical force exerted on an object with given force and area is calculated using pressure = Force/Area. To calculate Pressure when force and area are given, you need Force (F) and Area (A). With our tool, you need to enter the respective value for Force and Area and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Pressure?
In this formula, Pressure uses Force and Area. We can use 11 other way(s) to calculate the same, which is/are as follows -
  • pressure = Density*Acceleration Due To Gravity*Height
  • pressure = (specific weight of liquid)*(Height)
  • pressure = (1/3)*Density of Gas*(Root mean square velocity)^2
  • pressure = 2*Total downward force on soil/(3*middle third distance)
  • pressure = Theoretical torque/Theoretical volumetric displacement
  • pressure = Force/Area of piston
  • pressure = Force/(Area of piston-Area of piston rod)
  • pressure = Boltzmann constant 1*Freestream density*((Energy/Freestream density)^(1/2))/(Time)
  • pressure = [BoltZ]*Freestream density*((Energy/Freestream density)^(2/3))*(Time)^(-2/3)
  • pressure = [BoltZ]*Freestream density*(sqrt(pi/8))*Diameter*(sqrt(Drag Coefficient))*(Freestream Velocity^2/Distance from X-axis)
  • pressure = density ahead of shock*(1+((Specific Heat Ratio-1)/2)*(Normal velocity/Old speed of sound))^(2*Specific Heat Ratio/(Specific Heat Ratio-Time))
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