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Email: president@zuj.edu.jo. 1.1 Defining Engineering Fluid Mechanics 2, 1.8 Checking for Dimensional Homogeneity (DH) 19, 2.3 Modeling Fluids as Constant Density 32, 2.9 Predicting Boiling Using Vapor Pressure 50, 2.10 Characterizing Thermal Energy in Flowing Gases 51, 3.2 Calculating Pressure Changes Associated with Elevation Changes 65, 3.4 Predicting Forces on Plane Surfaces (Panels) 77, 3.5 Calculating Forces on Curved Surfaces 83, 3.7 Predicting Stability of Immersed and Floating Bodies 88, CHAPTER 4 The Bernoulli Equation and Pressure Variation 111, 4.1 Describing Streamlines, Streaklines, and Pathlines 112, 4.2 Characterizing Velocity of a Flowing Fluid 114, 4.5 Applying Euler’s Equation to Understand Pressure Variation 127, 4.6 Applying the Bernoulli Equation along a Streamline 132, 4.8 Characterizing Rotational Motion of a Flowing Fluid 142, 4.9 The Bernoulli Equation for Irrotational Flow 146, 4.10 Describing the Pressure Field for Flow over a Circular Cylinder 147, 4.11 Calculating the Pressure Field for a Rotating Flow 149, CHAPTER 5 Control Volume Approach and Continuity Equation 169, 5.4 Continuity Equation (Application) 184, 6.1 Understanding Newton’s Second Law of Motion 209, 6.2 The Linear Momentum Equation: Theory 213, 6.3 Linear Momentum Equation: Application 216, 6.4 The Linear Momentum Equation for a Stationary Control Volume 218, 6.5 Examples of the Linear Momentum Equation (Moving Objects) 228, 7.6 Contrasting the Bernoulli Equation and the Energy Equation 270, CHAPTER 8 Dimensional Analysis and Similitude 292, 8.6 Model Studies for Flows without Free-Surface Effects 305, 8.8 Approximate Similitude at High Reynolds Numbers 309, 9.2 Qualitative Description of the Boundary Layer 330, 9.6 Pressure Gradient Effects of Boundary Layers 347, 10.4 Stress Distributions in Pipe Flow 366, 10.6 Turbulent Flow and the Moody Diagram 371, 11.1 Relating Lift and Drag to Stress Distributions 407, 11.3 Drag of Axisymmetric and 3-D Bodies 413, 12.1 Wave Propagation in Compressible Fluids 445, 12.4 Isentropic Compressible Flow Through a Duct with Varying Area 460, 13.3 Measurement in Compressible Flow 501, 15.1 Description of Open-Channel Flow 555, 15.2 Energy Equation for Steady Open-Channel Flow 557, CHAPTER 16 Modeling of Fluid Dynamics Problems 598, 16.2 Foundations for Learning Partial Differential Equations (PDEs) 603, 16.5 Computational Fluid Dynamics (CFD) 623, Your email address will not be published.
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