Daniel D'Orazio edited untitled.tex  over 9 years ago

Commit id: 29f11f4d2eac8d3ee48938fb5a96286fd8815d5f

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\int{\frac{dP}{\rho}} = \frac{(c^{\rm{ad}}_{s})^2 }{\gamma -1} = \frac{\gamma (c^{\rm{iso}}_{s})^2 }{\gamma -1} \quad \rm{Adiabatic} \ \rm{Flow}  \end{equation}  \begin{equation}  \int{\frac{dP}{\rho}} = (c^{\rm{iso}}_{s})^2 \ln{\frac{\rho}{rho_0}} \ln{\frac{\rho}{\rho_0}}  \quad \rm{Isothermal} \ \rm{Flow} \end{equation}