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## Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given Solution

STEP 0: Pre-Calculation Summary
Formula Used
dynamic_viscosity_of_fluid = Shear Stress/(Velocity Gradient)
μl = 𝜏/(VG)
This formula uses 2 Variables
Variables Used
Shear Stress - The Shear stress is force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress. (Measured in Pascal)
Velocity Gradient - Velocity Gradient is the difference in velocity between the adjacent layers of the fluid. (Measured in Meter per Second)
STEP 1: Convert Input(s) to Base Unit
Shear Stress: 50 Pascal --> 50 Pascal No Conversion Required
Velocity Gradient: 10 Meter per Second --> 10 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
μl = 𝜏/(VG) --> 50/(10)
Evaluating ... ...
μl = 5
STEP 3: Convert Result to Output's Unit
5 Pascal Second -->50 Poise (Check conversion here)
FINAL ANSWER
50 Poise <-- Dynamic viscosity
(Calculation completed in 00.017 seconds)

## < 9 Newton’s Friction Postulation Calculators

Dynamic Viscosity of the Fluid when Fluid Filling width y between the plates is given
dynamic_viscosity_of_fluid = (Shear Stress*Width between the Plates)/Velocity Go
Velocity of the Upper Plate when Shear Force per unit area or Shear Stress is given
velocity = (Shear Stress*Width between the Plates)/Dynamic viscosity Go
Fluid Filling width y between the plates when Shear Force per unit area or Shear Stress is given
width_between_plates = (Dynamic viscosity*Velocity)/Shear Stress Go
Relationship between the Dynamic Viscosity and Kinematic Viscosity
kinematic_viscosity_of_fluid = Dynamic viscosity/Mass Density of the Fluid Go
Dynamic Viscosity when Kinematic Viscosity is given
dynamic_viscosity_of_fluid = Kinematic viscosity*Mass Density of the Fluid Go
Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given
dynamic_viscosity_of_fluid = Shear Stress/(Velocity Gradient) Go
Mass Density of the Fluid when Kinematic Viscosity is given
mass_density_of_fluid = Dynamic viscosity/Kinematic viscosity Go
Velocity Gradient when Shear Force per unit area or Shear Stress is given
velocity_gradient = Shear Stress/Dynamic viscosity Go
Shear Force per unit area or Shear Stress
shear_stress = Dynamic viscosity*Velocity Gradient Go

### Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given Formula

dynamic_viscosity_of_fluid = Shear Stress/(Velocity Gradient)
μl = 𝜏/(VG)

## What is Shear Force?

Shear forces acting tangentially to a surface of a solid body cause deformation. When the fluid is in motion, shear stresses are developed due to the particles in the fluid moving relative to one another. For a fluid flowing in a pipe, fluid velocity will be zero at the pipe wall.

## How to Calculate Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given?

Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given calculator uses dynamic_viscosity_of_fluid = Shear Stress/(Velocity Gradient) to calculate the Dynamic viscosity, The Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given is the resistance to movement of one layer of a fluid over another. Dynamic viscosity and is denoted by μl symbol.

How to calculate Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given using this online calculator? To use this online calculator for Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given, enter Shear Stress (𝜏) and Velocity Gradient (VG) and hit the calculate button. Here is how the Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given calculation can be explained with given input values -> 50 = 50/(10).

### FAQ

What is Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given?
The Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given is the resistance to movement of one layer of a fluid over another and is represented as μl = 𝜏/(VG) or dynamic_viscosity_of_fluid = Shear Stress/(Velocity Gradient). The Shear stress is force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress and Velocity Gradient is the difference in velocity between the adjacent layers of the fluid.
How to calculate Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given?
The Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given is the resistance to movement of one layer of a fluid over another is calculated using dynamic_viscosity_of_fluid = Shear Stress/(Velocity Gradient). To calculate Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given, you need Shear Stress (𝜏) and Velocity Gradient (VG). With our tool, you need to enter the respective value for Shear Stress and Velocity Gradient 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 Dynamic viscosity?
In this formula, Dynamic viscosity uses Shear Stress and Velocity Gradient. We can use 9 other way(s) to calculate the same, which is/are as follows -
• shear_stress = Dynamic viscosity*Velocity Gradient
• dynamic_viscosity_of_fluid = Shear Stress/(Velocity Gradient)
• velocity_gradient = Shear Stress/Dynamic viscosity
• velocity = (Shear Stress*Width between the Plates)/Dynamic viscosity
• width_between_plates = (Dynamic viscosity*Velocity)/Shear Stress
• dynamic_viscosity_of_fluid = (Shear Stress*Width between the Plates)/Velocity
• kinematic_viscosity_of_fluid = Dynamic viscosity/Mass Density of the Fluid
• dynamic_viscosity_of_fluid = Kinematic viscosity*Mass Density of the Fluid
• mass_density_of_fluid = Dynamic viscosity/Kinematic viscosity
Where is the Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given calculator used?
Among many, Dynamic Viscosity of the fluid when Shear Force per unit area or Shear Stress is given calculator is widely used in real life applications like {FormulaUses}. Here are few more real life examples -
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