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The ideal MHD equations consist of the continuity equation, the Cauchy momentum equation, Ampere's Law neglecting displacement current, and a temperature evolution equation. As with any fluid description to a kinetic system, a closure approximation must be applied to highest moment of the particle distribution equation. This is often accomplished with approximations to the heat flux through a condition of adiabaticity or isothermality.

Produktbeschreibung
The ideal MHD equations consist of the continuity equation, the Cauchy momentum equation, Ampere's Law neglecting displacement current, and a temperature evolution equation. As with any fluid description to a kinetic system, a closure approximation must be applied to highest moment of the particle distribution equation. This is often accomplished with approximations to the heat flux through a condition of adiabaticity or isothermality.
Autorenporträt
Dr.Jaweriya SultanaCompleted Post Graduation In Year 2007 From Gulbarga University, Gulbarga. Received Doctoral Degree In Mathematics In March 2013, With Specialization Fluid Mechanics From Gulbarga University, Gulbarga. Research Interest Includes Heat And Mass Transfer Of Newtonian And Non-newtonian Fluids.