Applied Pressure in Terms of Coefficient of Flowability for Solids Formula

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Applied Pressure is the pressure that is applied on the object of interest. Check FAQs
PA=PNK
PA - Applied Pressure?PN - Normal Pressure?K - Coefficient of Flowability?

Applied Pressure in Terms of Coefficient of Flowability for Solids Example

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Here is how the Applied Pressure in Terms of Coefficient of Flowability for Solids equation looks like with Values.

Here is how the Applied Pressure in Terms of Coefficient of Flowability for Solids equation looks like with Units.

Here is how the Applied Pressure in Terms of Coefficient of Flowability for Solids equation looks like.

8.9982Edit=15Edit1.667Edit
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Applied Pressure in Terms of Coefficient of Flowability for Solids Solution

Follow our step by step solution on how to calculate Applied Pressure in Terms of Coefficient of Flowability for Solids?

FIRST Step Consider the formula
PA=PNK
Next Step Substitute values of Variables
PA=15Pa1.667
Next Step Prepare to Evaluate
PA=151.667
Next Step Evaluate
PA=8.99820035992801Pa
LAST Step Rounding Answer
PA=8.9982Pa

Applied Pressure in Terms of Coefficient of Flowability for Solids Formula Elements

Variables
Applied Pressure
Applied Pressure is the pressure that is applied on the object of interest.
Symbol: PA
Measurement: PressureUnit: Pa
Note: Value should be greater than 0.
Normal Pressure
Normal Pressure is the pressure that is normal on the surface of object of interest .
Symbol: PN
Measurement: PressureUnit: Pa
Note: Value should be greater than 0.
Coefficient of Flowability
Coefficient of Flowability of a device is a relative measure of its efficiency at allowing fluid flow.
Symbol: K
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other formulas in Storage and Transportation Of Solids category

​Go Energy Required to Crush Coarse Materials according to Bond's Law
E=Wi((100d2)0.5-(100d1)0.5)
​Go Mass Mean Diameter
DW=(xADpi)
​Go Number of Particles
Np=mρparticleVparticle
​Go Sauter Mean Diameter
dsauter=6Vparticle_1Sparticle

How to Evaluate Applied Pressure in Terms of Coefficient of Flowability for Solids?

Applied Pressure in Terms of Coefficient of Flowability for Solids evaluator uses Applied Pressure = Normal Pressure/Coefficient of Flowability to evaluate the Applied Pressure, The Applied Pressure in Terms of Coefficient of Flowability for Solids is a relation between Applied Pressure and Coefficient of Flowability based on the principle that ratio of normal pressure and applied pressure remains constant. Applied Pressure is denoted by PA symbol.

How to evaluate Applied Pressure in Terms of Coefficient of Flowability for Solids using this online evaluator? To use this online evaluator for Applied Pressure in Terms of Coefficient of Flowability for Solids, enter Normal Pressure (PN) & Coefficient of Flowability (K) and hit the calculate button.

FAQs on Applied Pressure in Terms of Coefficient of Flowability for Solids

What is the formula to find Applied Pressure in Terms of Coefficient of Flowability for Solids?
The formula of Applied Pressure in Terms of Coefficient of Flowability for Solids is expressed as Applied Pressure = Normal Pressure/Coefficient of Flowability. Here is an example- 8.9982 = 15/1.667.
How to calculate Applied Pressure in Terms of Coefficient of Flowability for Solids?
With Normal Pressure (PN) & Coefficient of Flowability (K) we can find Applied Pressure in Terms of Coefficient of Flowability for Solids using the formula - Applied Pressure = Normal Pressure/Coefficient of Flowability.
Can the Applied Pressure in Terms of Coefficient of Flowability for Solids be negative?
No, the Applied Pressure in Terms of Coefficient of Flowability for Solids, measured in Pressure cannot be negative.
Which unit is used to measure Applied Pressure in Terms of Coefficient of Flowability for Solids?
Applied Pressure in Terms of Coefficient of Flowability for Solids is usually measured using the Pascal[Pa] for Pressure. Kilopascal[Pa], Bar[Pa], Pound Per Square Inch[Pa] are the few other units in which Applied Pressure in Terms of Coefficient of Flowability for Solids can be measured.
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