## Engineering fluid mechanicsGood,No Highlights,No Markup,all pages are intact, Slight Shelfwear,may have the corners slightly dented, may have slight color changes/slightly damaged spine. |

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### Contents

CHAPTER THREE FLUID STATICS | 27 |

CHAPTER FIVE PRESSURE VARIATION | 70 |

CHAPTER SEVEN ENERGY PRINCIPLE | 183 |

Copyright | |

8 other sections not shown

### Common terms and phrases

acceleration airfoil anemometer answer applied Assume atmospheric pressure basic bend Bernoulli equation body boundary layer Calculate channel coefficient consider constant continuity equation control surface control volume critical depth curve cylinder density depth determine diameter dimensional analysis dimensionless direction discharge downstream drag dynamic elevation energy equation engineering example exit figure flow pattern flow rate fluid mechanics force acting ft/sec gage given head loss hence horizontal hydraulic hydraulic jump hydrostatic force irrotational laminar sublayer lbf/ft3 liquid Mach number manometer mass maximum meter momentum equation nozzle obtain orifice parameters pipe plate pounds mass problems propeller prototype psia pump rate of flow ratio reservoir resistance Reynolds number rotation shear stress shock wave shown in Fig Solution solve specific weight streamlines supersonic tank temperature tube turbine upstream vane variables velocity distribution vertical viscous weir zero