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More transport phenomena

More transport phenomena

All Chemical Engineer knows what is the transfer of momentum (momentum), heat and matter. The theory shows that there are analogies, physical and mathematical modeling, among these three mechanisms of transfer is known as transport phenomena. What is not well known is that these are not the only processes of displacement in time and space of a particular physical entity.

The flow of electrical current either through a conductor or in a electrolytic medium is itself a phenomenon of transport. Can also be called as a phenomenon of electrical charge transfer, is closely related to heat conduction in solids. Mathematically, Ohm's law of electric current driving (as differential) and the Fourier law of heat conduction are identical and represent a typical example of what is "Flux", the mathematical differential equation that combines speed transfer of the physical entity transported directly proportional to a force that motivates the movement, expressed as a gradient and a physical property inherent to conducting medium that facilitates (or inhibits) the displacement.


All Chemical Engineer knows what is the transfer of momentum (momentum), heat and matter. The theory shows that there are analogies, physical and mathematical modeling, among these three mechanisms of transfer is known as transport phenomena. What is not well known is that these are not the only processes of displacement in time and space of a particular physical entity.

The flow of electrical current either through a conductor or in a electrolytic medium is itself a phenomenon of transport. Can also be called as a phenomenon of electrical charge transfer, is closely related to heat conduction in solids. Mathematically, Ohm's law of electric current driving (as differential) and the Fourier law of heat conduction are identical and represent a typical example of what is "Flux", the mathematical differential equation that combines speed transfer of the physical entity transported directly proportional to a force that motivates the movement, expressed as a gradient and a physical property inherent to conducting medium that facilitates (or inhibits) the displacement.

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