Molecular diffusivity of momentum given Prandtl number Solution

STEP 0: Pre-Calculation Summary
Formula Used
Molecular Diffusivity of Momentum = Prandtl Number*Molecular Diffusivity of Heat
Dm = Pr*Mdh
This formula uses 3 Variables
Variables Used
Molecular Diffusivity of Momentum - (Measured in Square Meter Per Second) - Molecular diffusivity of momentum is the spread of momentum between particles (atoms or molecules) of matter, often in the fluid state.
Prandtl Number - Prandtl Number or Prandtl group is a dimensionless number, named after the German physicist Ludwig Prandtl, defined as the ratio of momentum diffusivity to thermal diffusivity.
Molecular Diffusivity of Heat - (Measured in Square Meter Per Second) - Molecular Diffusivity of Heat spread of momentum between heat of matter, often in the fluid state.
STEP 1: Convert Input(s) to Base Unit
Prandtl Number: 0.7 --> No Conversion Required
Molecular Diffusivity of Heat: 0.72 Square Meter Per Second --> 0.72 Square Meter Per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Dm = Pr*Mdh --> 0.7*0.72
Evaluating ... ...
Dm = 0.504
STEP 3: Convert Result to Output's Unit
0.504 Square Meter Per Second --> No Conversion Required
FINAL ANSWER
0.504 Square Meter Per Second <-- Molecular Diffusivity of Momentum
(Calculation completed in 00.004 seconds)

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Molecular diffusivity of momentum given Prandtl number Formula

​LaTeX ​Go
Molecular Diffusivity of Momentum = Prandtl Number*Molecular Diffusivity of Heat
Dm = Pr*Mdh

What is convection?

Convection is the process of heat transfer by the bulk movement of molecules within fluids such as gases and liquids. The initial heat transfer between the object and the fluid takes place through conduction, but the bulk heat transfer happens due to the motion of the fluid.

How to Calculate Molecular diffusivity of momentum given Prandtl number?

Molecular diffusivity of momentum given Prandtl number calculator uses Molecular Diffusivity of Momentum = Prandtl Number*Molecular Diffusivity of Heat to calculate the Molecular Diffusivity of Momentum, The Molecular diffusivity of momentum given Prandtl number formula is defined as spread of momentum between particles (atoms or molecules) of matter, often in the fluid state. Molecular Diffusivity of Momentum is denoted by Dm symbol.

How to calculate Molecular diffusivity of momentum given Prandtl number using this online calculator? To use this online calculator for Molecular diffusivity of momentum given Prandtl number, enter Prandtl Number (Pr) & Molecular Diffusivity of Heat (Mdh) and hit the calculate button. Here is how the Molecular diffusivity of momentum given Prandtl number calculation can be explained with given input values -> 0.504 = 0.7*0.72.

FAQ

What is Molecular diffusivity of momentum given Prandtl number?
The Molecular diffusivity of momentum given Prandtl number formula is defined as spread of momentum between particles (atoms or molecules) of matter, often in the fluid state and is represented as Dm = Pr*Mdh or Molecular Diffusivity of Momentum = Prandtl Number*Molecular Diffusivity of Heat. Prandtl Number or Prandtl group is a dimensionless number, named after the German physicist Ludwig Prandtl, defined as the ratio of momentum diffusivity to thermal diffusivity & Molecular Diffusivity of Heat spread of momentum between heat of matter, often in the fluid state.
How to calculate Molecular diffusivity of momentum given Prandtl number?
The Molecular diffusivity of momentum given Prandtl number formula is defined as spread of momentum between particles (atoms or molecules) of matter, often in the fluid state is calculated using Molecular Diffusivity of Momentum = Prandtl Number*Molecular Diffusivity of Heat. To calculate Molecular diffusivity of momentum given Prandtl number, you need Prandtl Number (Pr) & Molecular Diffusivity of Heat (Mdh). With our tool, you need to enter the respective value for Prandtl Number & Molecular Diffusivity of Heat 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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