Sheer stress Solution

STEP 0: Pre-Calculation Summary
Formula Used
Stress = (Coefficient of Velocity*Velocity of Liquid)/Distance
σ = (Cv*V)/ds
This formula uses 4 Variables
Variables Used
Stress - (Measured in Pascal) - Stress applied to a material is the force per unit area applied to the material.
Coefficient of Velocity - Coefficient of Velocity is the ratio of actual velocity to theoretical velocity.
Velocity of Liquid - (Measured in Meter per Second) - Velocity of Liquid is the velocity of liquid flowing in the tube.
Distance - (Measured in Meter) - Distance at which one leg of a closed stirrup resists torsion.
STEP 1: Convert Input(s) to Base Unit
Coefficient of Velocity: 0.92 --> No Conversion Required
Velocity of Liquid: 60 Meter per Second --> 60 Meter per Second No Conversion Required
Distance: 10.6 Meter --> 10.6 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σ = (Cv*V)/ds --> (0.92*60)/10.6
Evaluating ... ...
σ = 5.20754716981132
STEP 3: Convert Result to Output's Unit
5.20754716981132 Pascal --> No Conversion Required
FINAL ANSWER
5.20754716981132 5.207547 Pascal <-- Stress
(Calculation completed in 00.004 seconds)

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Created by Shobhit Dimri
Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
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6 Pressure Measurement Calculators

Pressure to Current Conversion
​ Go Value 2 = (((Value 1-Lower Range Value 1)*(Upper Range Value 2-Lower Range Value 2))/(Upper Range Value 1-Lower Range Value 1))+Lower Range Value 2
Sheer stress
​ Go Stress = (Coefficient of Velocity*Velocity of Liquid)/Distance
Change in Pressure
​ Go Pressure Difference = Difference of Height of Liquid*Specific Weight of Liquid
Pressure Difference in Manometer
​ Go Pressure Difference = Right Side Pressure-Left Side Pressure
Pressure on right of Manometer
​ Go Right Side Pressure = Pressure Difference+Left Side Pressure
Pressure on Left of Manometer
​ Go Left Side Pressure = Right Side Pressure-Pressure Difference

Sheer stress Formula

Stress = (Coefficient of Velocity*Velocity of Liquid)/Distance
σ = (Cv*V)/ds

What does dynamic viscosity depend on?

The dynamic viscosity is the viscosity of a moving fluid; it depends on T, P, and fluid composition.

How to Calculate Sheer stress?

Sheer stress calculator uses Stress = (Coefficient of Velocity*Velocity of Liquid)/Distance to calculate the Stress, The Sheer stress formula is defined as the component of stress coplanar with a material cross-section. It arises from the sheer force, the component of force vector parallel to the material cross-section. Stress is denoted by σ symbol.

How to calculate Sheer stress using this online calculator? To use this online calculator for Sheer stress, enter Coefficient of Velocity (Cv), Velocity of Liquid (V) & Distance (ds) and hit the calculate button. Here is how the Sheer stress calculation can be explained with given input values -> 5.207547 = (0.92*60)/10.6.

FAQ

What is Sheer stress?
The Sheer stress formula is defined as the component of stress coplanar with a material cross-section. It arises from the sheer force, the component of force vector parallel to the material cross-section and is represented as σ = (Cv*V)/ds or Stress = (Coefficient of Velocity*Velocity of Liquid)/Distance. Coefficient of Velocity is the ratio of actual velocity to theoretical velocity, Velocity of Liquid is the velocity of liquid flowing in the tube & Distance at which one leg of a closed stirrup resists torsion.
How to calculate Sheer stress?
The Sheer stress formula is defined as the component of stress coplanar with a material cross-section. It arises from the sheer force, the component of force vector parallel to the material cross-section is calculated using Stress = (Coefficient of Velocity*Velocity of Liquid)/Distance. To calculate Sheer stress, you need Coefficient of Velocity (Cv), Velocity of Liquid (V) & Distance (ds). With our tool, you need to enter the respective value for Coefficient of Velocity, Velocity of Liquid & Distance 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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