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## Unit Normal to the Surface when Force on the Fluid Element is Given Solution

STEP 0: Pre-Calculation Summary
Formula Used
unit_normal_to_surface = -Force/Pressure*Area Element
= -F/P*δA
This formula uses 3 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)
Pressure - The pressure is defined as the physical force exerted on an object. It is symbolized by P. (Measured in Pascal)
Area Element - Area Element of fluid the force is being acted upon. (Measured in Square Millimeter)
STEP 1: Convert Input(s) to Base Unit
Force: 2.5 Newton --> 2.5 Newton No Conversion Required
Pressure: 800 Pascal --> 800 Pascal No Conversion Required
Area Element: 10 Square Millimeter --> 1E-05 Square Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
= -F/P*δA --> -2.5/800*1E-05
Evaluating ... ...
= -3.125E-08
STEP 3: Convert Result to Output's Unit
-3.125E-08 --> No Conversion Required
-3.125E-08 <-- Unit Vector Normal to the Surface
(Calculation completed in 00.016 seconds)

## < 11 Other formulas that you can solve using the same Inputs

Heat Loss due to Pipe
heat_loss_due_to_pipe = (Force*Length*Fluid Velocity^2)/(2*Diameter *Acceleration Due To Gravity) Go
Work
work = Force*Displacement*cos(Angle A) Go
Torque
torque = Force*Displacement*sin(θ) Go
Gravitational Field Intensity
gravitational_field_intensity = Force/Mass Go
Electric Field Intensity
electric_field_intensity = Force/Charge Go
Impulse
impulse = Force*Time Taken to Travel Go
Body Force Work Rate
body_force_work_rate = Force/Volume Go
Surface Tension
surface_tension = Force/Length Go
Buoyant Force
buoyant_force = Pressure*Area Go
Pressure when force and area are given
pressure = Force/Area Go
Stress
stress = Force/Area Go

### Unit Normal to the Surface when Force on the Fluid Element is Given Formula

unit_normal_to_surface = -Force/Pressure*Area Element
= -F/P*δA

## How does pressure affect fluids?

Changes in pressure have very little effect on the volume of a liquid. Liquids are relatively incompressible because any increase in pressure can only slightly reduce the distance between the closely packed molecules. If the pressure above a liquid is increased sufficiently, the liquid forms a solid.

## How to Calculate Unit Normal to the Surface when Force on the Fluid Element is Given?

Unit Normal to the Surface when Force on the Fluid Element is Given calculator uses unit_normal_to_surface = -Force/Pressure*Area Element to calculate the Unit Vector Normal to the Surface, The Unit Normal to the Surface when Force on the Fluid Element is Given is defined as a vector which is perpendicular to the surface at a given point. . Unit Vector Normal to the Surface and is denoted by symbol.

How to calculate Unit Normal to the Surface when Force on the Fluid Element is Given using this online calculator? To use this online calculator for Unit Normal to the Surface when Force on the Fluid Element is Given, enter Force (F), Pressure (P) and Area Element (δA) and hit the calculate button. Here is how the Unit Normal to the Surface when Force on the Fluid Element is Given calculation can be explained with given input values -> -3.125E-8 = -2.5/800*1E-05.

### FAQ

What is Unit Normal to the Surface when Force on the Fluid Element is Given?
The Unit Normal to the Surface when Force on the Fluid Element is Given is defined as a vector which is perpendicular to the surface at a given point. and is represented as = -F/P*δA or unit_normal_to_surface = -Force/Pressure*Area Element. 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, The pressure is defined as the physical force exerted on an object. It is symbolized by P and Area Element of fluid the force is being acted upon.
How to calculate Unit Normal to the Surface when Force on the Fluid Element is Given?
The Unit Normal to the Surface when Force on the Fluid Element is Given is defined as a vector which is perpendicular to the surface at a given point. is calculated using unit_normal_to_surface = -Force/Pressure*Area Element. To calculate Unit Normal to the Surface when Force on the Fluid Element is Given, you need Force (F), Pressure (P) and Area Element (δA). With our tool, you need to enter the respective value for Force, Pressure and Area Element and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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