FormulaDen.com
Physics
Chemistry
Math
Chemical Engineering
Civil
Electrical
Electronics
Electronics and Instrumentation
Materials Science
Mechanical
Production Engineering
Financial
Health
You are here
-
Home
»
Physics
»
Mechanical
»
Heat and Mass Transfer
Mass Diffusing Rate in Heat and Mass Transfer Formulas
Mass Diffusing Rate is the proportionality constant between the molar flux due to molecular diffusion and the gradient in the concentration of the species. And is denoted by m
r
. Mass Diffusing Rate is usually measured using the Kilogram per Second for Mass Flow Rate. Note that the value of Mass Diffusing Rate is always negative.
Formulas to find Mass Diffusing Rate in Heat and Mass Transfer
f
x
Mass Diffusing Rate through Solid Boundary Sphere
Go
f
x
Mass Diffusing Rate through Hollow Cylinder with Solid Boundary
Go
f
x
Mass Diffusing Rate through Solid Boundary Plate
Go
List of variables in Heat and Mass Transfer formulas
f
x
Inner Radius
Go
f
x
Outer Radius
Go
f
x
Diffusion Coefficient When A Diffuse with B
Go
f
x
Mass Concentration of Component A in Mixture 1
Go
f
x
Mass Concentration of Component A in Mixture 2
Go
f
x
Length of Cylinder
Go
f
x
Outer Radius of Cylinder
Go
f
x
Inner Radius of Cylinder
Go
f
x
Area of Solid Boundary Plate
Go
f
x
Thickness of Solid Plate
Go
FAQ
What is the Mass Diffusing Rate?
Mass Diffusing Rate is the proportionality constant between the molar flux due to molecular diffusion and the gradient in the concentration of the species. Mass Diffusing Rate is usually measured using the Kilogram per Second for Mass Flow Rate. Note that the value of Mass Diffusing Rate is always negative.
Can the Mass Diffusing Rate be negative?
Yes, the Mass Diffusing Rate, measured in Mass Flow Rate can be negative.
What unit is used to measure Mass Diffusing Rate?
Mass Diffusing Rate is usually measured using the Kilogram per Second[kg/s] for Mass Flow Rate. Gram per Second[kg/s], Gram per Hour[kg/s], Milligram per Minute[kg/s] are the few other units in which Mass Diffusing Rate can be measured.
Let Others Know
✖
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!