Dynamic Viscosity given Maximum Velocity between Plates Solution

STEP 0: Pre-Calculation Summary
Formula Used
Dynamic Viscosity = ((Width^2)*Pressure Gradient)/(8*Maximum Velocity)
μ = ((w^2)*dp|dr)/(8*Vmax)
This formula uses 4 Variables
Variables Used
Dynamic Viscosity - (Measured in Pascal Second) - The Dynamic Viscosity refers to the internal resistance of a fluid to flow when a force is applied.
Width - (Measured in Meter) - Width is the measurement or extent of something from side to side.
Pressure Gradient - (Measured in Newton per Cubic Meter) - The Pressure Gradient refers to the rate of change of pressure in a particular direction indicating how quickly the pressure increases or decreases around a specific location.
Maximum Velocity - (Measured in Meter per Second) - The Maximum Velocity refers to the highest speed at which fluid can flow through a system without causing damage or inefficiency.
STEP 1: Convert Input(s) to Base Unit
Width: 3 Meter --> 3 Meter No Conversion Required
Pressure Gradient: 17 Newton per Cubic Meter --> 17 Newton per Cubic Meter No Conversion Required
Maximum Velocity: 18.6 Meter per Second --> 18.6 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
μ = ((w^2)*dp|dr)/(8*Vmax) --> ((3^2)*17)/(8*18.6)
Evaluating ... ...
μ = 1.02822580645161
STEP 3: Convert Result to Output's Unit
1.02822580645161 Pascal Second -->10.2822580645161 Poise (Check conversion ​here)
FINAL ANSWER
10.2822580645161 10.28226 Poise <-- Dynamic Viscosity
(Calculation completed in 00.004 seconds)

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National Institute of Technology Karnataka (NITK), Surathkal
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Dynamic Viscosity Calculators

Dynamic Viscosity using Velocity Distribution Profile
​ LaTeX ​ Go Dynamic Viscosity = (1/(2*Velocity of Liquid))*Pressure Gradient*(Width*Horizontal Distance^2)
Dynamic Viscosity given Pressure Difference
​ LaTeX ​ Go Dynamic Viscosity = (Pressure Difference*Width)/(12*Mean Velocity*Length of Pipe)
Dynamic Viscosity given Maximum Velocity between Plates
​ LaTeX ​ Go Dynamic Viscosity = ((Width^2)*Pressure Gradient)/(8*Maximum Velocity)
Dynamic Viscosity given Mean Velocity of Flow with Pressure Gradient
​ LaTeX ​ Go Dynamic Viscosity = ((Width^2)/(12*Mean Velocity))*Pressure Gradient

Dynamic Viscosity given Maximum Velocity between Plates Formula

​LaTeX ​Go
Dynamic Viscosity = ((Width^2)*Pressure Gradient)/(8*Maximum Velocity)
μ = ((w^2)*dp|dr)/(8*Vmax)

What is Dynamic Viscosity?

Dynamic viscosity (also known as absolute viscosity) is the measurement of the fluid's internal resistance to flow while kinematic viscosity refers to the ratio of dynamic viscosity to density.

How to Calculate Dynamic Viscosity given Maximum Velocity between Plates?

Dynamic Viscosity given Maximum Velocity between Plates calculator uses Dynamic Viscosity = ((Width^2)*Pressure Gradient)/(8*Maximum Velocity) to calculate the Dynamic Viscosity, The Dynamic Viscosity given Maximum Velocity between Plates is defined as the resistance offered by the fluid on to the relative motion of the object into it. Dynamic Viscosity is denoted by μ symbol.

How to calculate Dynamic Viscosity given Maximum Velocity between Plates using this online calculator? To use this online calculator for Dynamic Viscosity given Maximum Velocity between Plates, enter Width (w), Pressure Gradient (dp|dr) & Maximum Velocity (Vmax) and hit the calculate button. Here is how the Dynamic Viscosity given Maximum Velocity between Plates calculation can be explained with given input values -> 102.8226 = ((3^2)*17)/(8*18.6).

FAQ

What is Dynamic Viscosity given Maximum Velocity between Plates?
The Dynamic Viscosity given Maximum Velocity between Plates is defined as the resistance offered by the fluid on to the relative motion of the object into it and is represented as μ = ((w^2)*dp|dr)/(8*Vmax) or Dynamic Viscosity = ((Width^2)*Pressure Gradient)/(8*Maximum Velocity). Width is the measurement or extent of something from side to side, The Pressure Gradient refers to the rate of change of pressure in a particular direction indicating how quickly the pressure increases or decreases around a specific location & The Maximum Velocity refers to the highest speed at which fluid can flow through a system without causing damage or inefficiency.
How to calculate Dynamic Viscosity given Maximum Velocity between Plates?
The Dynamic Viscosity given Maximum Velocity between Plates is defined as the resistance offered by the fluid on to the relative motion of the object into it is calculated using Dynamic Viscosity = ((Width^2)*Pressure Gradient)/(8*Maximum Velocity). To calculate Dynamic Viscosity given Maximum Velocity between Plates, you need Width (w), Pressure Gradient (dp|dr) & Maximum Velocity (Vmax). With our tool, you need to enter the respective value for Width, Pressure Gradient & Maximum Velocity 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 Width, Pressure Gradient & Maximum Velocity. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Dynamic Viscosity = (1/(2*Velocity of Liquid))*Pressure Gradient*(Width*Horizontal Distance^2)
  • Dynamic Viscosity = ((Width^2)/(12*Mean Velocity))*Pressure Gradient
  • Dynamic Viscosity = (Pressure Difference*Width)/(12*Mean Velocity*Length of Pipe)
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