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High Quality Content by WIKIPEDIA articles! In fluid dynamics, the Euler equations govern inviscid flow. They correspond to the Navier Stokes equations with zero viscosity and heat conduction terms. They are usually written in the conservation form shown below to emphasize that they directly represent conservation of mass, momentum, and energy. The equations are named after Leonhard Euler. The Euler equations can be applied to compressible as well as to incompressible flow using either an appropriate equation of state or assuming that the divergence of the flow velocity field is zero, respectively.…mehr

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High Quality Content by WIKIPEDIA articles! In fluid dynamics, the Euler equations govern inviscid flow. They correspond to the Navier Stokes equations with zero viscosity and heat conduction terms. They are usually written in the conservation form shown below to emphasize that they directly represent conservation of mass, momentum, and energy. The equations are named after Leonhard Euler. The Euler equations can be applied to compressible as well as to incompressible flow using either an appropriate equation of state or assuming that the divergence of the flow velocity field is zero, respectively.