Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow Formula

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Mass Transfer Boundary Layer Thickness at x is the thickness of the boundary layer at a distance X. Check FAQs
δmx=𝛿hx(Sc-0.333)
δmx - Mass Transfer Boundary Layer Thickness at x?𝛿hx - Hydrodynamic Boundary Layer Thickness?Sc - Schmidt Number?

Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow Example

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Here is how the Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow equation looks like with Values.

Here is how the Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow equation looks like with Units.

Here is how the Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow equation looks like.

3.7158Edit=8.5Edit(12Edit-0.333)
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Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow Solution

Follow our step by step solution on how to calculate Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow?

FIRST Step Consider the formula
δmx=𝛿hx(Sc-0.333)
Next Step Substitute values of Variables
δmx=8.5m(12-0.333)
Next Step Prepare to Evaluate
δmx=8.5(12-0.333)
Next Step Evaluate
δmx=3.71579350079998
LAST Step Rounding Answer
δmx=3.7158

Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow Formula Elements

Variables
Mass Transfer Boundary Layer Thickness at x
Mass Transfer Boundary Layer Thickness at x is the thickness of the boundary layer at a distance X.
Symbol: δmx
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Hydrodynamic Boundary Layer Thickness
Hydrodynamic Boundary Layer Thickness is the thickness of a hydrodynamic boundary at a distance of X.
Symbol: 𝛿hx
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Schmidt Number
Schmidt number (Sc) is a dimensionless number defined as the ratio of momentum diffusivity (kinematic viscosity) and mass diffusivity.
Symbol: Sc
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other formulas in Mass Transfer Coefficient category

​Go Local Sherwood Number for Flat Plate in Laminar Flow
Lsh=0.332(Rel0.5)(Sc0.333)
​Go Sherwood Number for Flat Plate in Laminar Flow
Nsh=0.664(Re0.5)(Sc0.333)
​Go Drag coefficient of flat plate laminar flow
CD=0.644Re0.5
​Go Drag Coefficient of Flat Plate Laminar Flow using Schmidt Number
CD=2kL(Sc0.67)u

How to Evaluate Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow?

Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow evaluator uses Mass Transfer Boundary Layer Thickness at x = Hydrodynamic Boundary Layer Thickness*(Schmidt Number^(-0.333)) to evaluate the Mass Transfer Boundary Layer Thickness at x, The Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow formula is defined as the value of mass transfer boundary layer thickness when given Schmidt number and the hydrodynamic boundary layer thickness. Mass Transfer Boundary Layer Thickness at x is denoted by δmx symbol.

How to evaluate Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow using this online evaluator? To use this online evaluator for Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow, enter Hydrodynamic Boundary Layer Thickness (𝛿hx) & Schmidt Number (Sc) and hit the calculate button.

FAQs on Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow

What is the formula to find Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow?
The formula of Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow is expressed as Mass Transfer Boundary Layer Thickness at x = Hydrodynamic Boundary Layer Thickness*(Schmidt Number^(-0.333)). Here is an example- 3.715794 = 8.5*(12^(-0.333)).
How to calculate Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow?
With Hydrodynamic Boundary Layer Thickness (𝛿hx) & Schmidt Number (Sc) we can find Mass Transfer Boundary Layer Thickness of Flat Plate in Laminar Flow using the formula - Mass Transfer Boundary Layer Thickness at x = Hydrodynamic Boundary Layer Thickness*(Schmidt Number^(-0.333)).
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