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LaTeX Math Block
anchorJ9867
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\frac{d p}{d l} =
j^2_m \, \frac{1}{\rho} \cdot c \cdot \frac{d p}{dl}   + \rho \, g \, \cos \theta -  \frac{j_m^2}{2 d} \cdot \frac{f}{\rho}

and finally

LaTeX Math Block
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91WI7
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\left( 1 - j_m^2 \cdot \frac{c}{\rho}   \right )  \frac{dp}{dl} = \rho \, g \, cos \

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theta  - \frac{j_m^2 }{2  d} \cdot \frac{f(p)}

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{\rho

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Alternative form

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LaTeX Math Block
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\left[ \frac{1}{c} - \frac{j_m^2}{\rho} \right] \cdot \frac{d \rho}{dl} =
\rho^2 \, g \, \cos \theta -  \frac{j_m^2 }{2d} \cdot f(\rho)


See Also

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Petroleum Industry / Upstream / Pipe Flow Simulation / Water Pipe Flow @model / Stationary Isothermal Homogenous Pipe Flow Pressure Profile @model

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