A Brief Introduction to Fluid Mechanics

  • A Brief Introduction to Fluid Mechanics
    By Donald F. Young, Bruce R. Munson, Theodore H. Okiishi

    Equivalent Roughness, E Pipe Feet Millimeters Riveted steel 0.003–0.03 0.9–9.0 Concrete 0.001–0.01 0.3–3.0 Wood stave 0.0006–0.003 0.18–0.9 ... FIND (a) Determine the pressure drop in a 0.1-m section of the tube if the flow is laminar ...

  • A Brief Introduction to Fluid Mechanics: Textbook and Student Solutions Manual
    By Donald F. Young, Bruce R. Munson, Theodore H. Okiishi

    Concise and focused-these are the two guiding principles of Young, Munson, and Okiishi's Third Edition of A Brief Introduction to Fluid Mechanics.

  • A Brief Introduction To Fluid Mechanics
    By Donald F. Young, Bruce R. Munson, Theodore H. Okiishi

    The text lucidly presents basic analysis techniques and addresses practical concerns and applications, such as pipe flow, open-channel flow, flow measurement, and drag and lift.

  • A Brief Introduction to Fluid Mechanics
    By Donald F. Young, Bruce R. Munson, Theodore H. Okiishi

    Concise and focused-these are the two guiding principles of Young, Munson, and Okiishi's Third Edition of A Brief Introduction to Fluid Mechanics.

  • A Brief Introduction to Fluid Mechanics
    By Donald F. Young

    Now readers can quickly learn the basic concepts and principles of modern fluid mechanics with this concise book. It clearly presents basic analysis techniques while also addressing practical concerns and...

  • A Brief Introduction to Fluid Mechanics
    By Bruce Roy Munson, Donald F. Young, Theodore Hisao Okiishi

    The authors clearly present basic analysis techniques and address practical concerns and applications, such as pipe flow, open-channel flow, flow measurement, and drag and lift.

  • A Brief Introduction to Fluid Mechanics
    By Donald F. Young, Bruce R. Munson, Theodore H. Okiishi

    Concise and focused-these are the two guiding principles of Young, Munson, and Okiishi's Third Edition of A Brief Introduction to Fluid Mechanics.