ENGINEERING FUNDAMENTALS
ENGINEERING FUNDAMENTALS
6th Edition
ISBN: 9781337705011
Author: MOAVENI
Publisher: CENGAGE L
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Chapter 18, Problem 6P
To determine

Plot the power requirement, the rate of change of power requirement as a function of speed.

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3. Determine drag on the sphere for flow past a sphere (see the figure below) using these parameters D (diameter of sphere), p (density), u (viscosity), u (velocity), Fo (Drag on the sphere).
The head loss due to flow of a fluid inside a pipe is calculated from .L V? D 2g h Loss where Loss f = friction factor L = pipe length (m) D = pipe diameter (m) V = average flow velocity (m/s) g = acceleration due to gravity (m/s²) What is the appropriate unit for friction factor f?
3. The drag force of an object moving through a fluid is found to be FD = CpAv² where Cis the drag coefficient, A is the area of the object facing the fluid, and p is the density of the fluid. The drag coefficient is determined experimentally. Using this form of the drag force, calculate the terminal velocity of a 75 kg skydiver in 2 positions: diving head first like an arrow (C=0.70, A=0.18 m²) and laying horizontal (C=1.0, A=2 m²). The density of air is p = 1.21 kg/m³.

Chapter 18 Solutions

ENGINEERING FUNDAMENTALS

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