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3 | (42) |
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3 | (1) |
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3 | (2) |
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1.2 Characteristics of Matter |
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5 | (1) |
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6 | (3) |
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9 | (2) |
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11 | (2) |
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1.6 Some Basic Fluid Properties |
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13 | (5) |
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18 | (5) |
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1.8 Viscosity Measurement |
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23 | (4) |
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27 | (1) |
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1.10 Surface Tension and Capillarity |
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28 | (17) |
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45 | (92) |
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45 | (1) |
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45 | (3) |
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2.2 Absolute and Gage Pressure |
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48 | (2) |
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2.3 Static Pressure Variation |
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50 | (1) |
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2.4 Pressure Variation for Incompressible Fluids |
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51 | (2) |
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2.5 Pressure Variation for Compressible Fluids |
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53 | (3) |
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2.6 Measurement of Static Pressure |
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56 | (8) |
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2.7 Hydrostatic Force on a Plane Surface---Formula Method |
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64 | (6) |
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2.8 Hydrostatic Force on a Plane Surface---Geometrical Method |
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70 | (5) |
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2.9 Hydrostatic Force on a Plane Surface---Integration Method |
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75 | (3) |
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2.10 Hydrostatic Force on an Inclined Plane or Curved Surface Determined by Projection |
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78 | (7) |
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85 | (3) |
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88 | (3) |
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2.13 Constant Translational Acceleration of a Liquid |
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91 | (5) |
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2.14 Steady Rotation of a Liquid |
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96 | (41) |
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3 Kinematics of Fluid Motion |
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137 | (1) |
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3 Kinematics of Fluid Motion |
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137 | (36) |
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137 | (1) |
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137 | (4) |
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3.2 Graphical Descriptions of Fluid Flow |
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141 | (4) |
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3.3 Fluid Flow Descriptions |
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145 | (7) |
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152 | (7) |
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3.5 Streamline Coordinates |
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159 | (14) |
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173 | (1) |
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173 | (42) |
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173 | (1) |
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4.1 Volumetric Flow, Mass Flow, and Average Velocity |
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173 | (5) |
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4.2 Finite Control Volumes |
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178 | (2) |
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4.3 The Reynolds Transport Theorem |
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180 | (4) |
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184 | (31) |
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3 | (42) |
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45 | (170) |
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5 Work and Energy of Moving Fluids |
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215 | (70) |
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215 | (1) |
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5.1 Euler's Equations of Motion |
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215 | (4) |
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5.2 The Bernoulli Equation |
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219 | (3) |
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5.3 Applications of the Bernoulli Equation |
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222 | (13) |
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5.4 Energy and Hydraulic Grade Lines |
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235 | (9) |
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244 | (41) |
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285 | (58) |
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285 | (1) |
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6.1 The Linear Momentum Equation |
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285 | (3) |
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6.2 Applications to Bodies at Rest |
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288 | (9) |
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6.3 Applications to Bodies Having Constant Velocity |
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297 | (5) |
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6.4 The Angular Momentum Equation |
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302 | (8) |
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6.5 Propellers and Wind Turbines |
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310 | (5) |
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6.6 Applications for Control Volumes Having Accelerated Motion |
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315 | (1) |
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6.7 Turbojets and Turbofans |
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316 | (1) |
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317 | (26) |
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7 Differential Fluid Flow |
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343 | (76) |
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343 | (1) |
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7.1 Differential Analysis |
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343 | (1) |
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7.2 Kinematics of Differential Fluid Elements |
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344 | (4) |
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7.3 Circulation and Vorticity |
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348 | (5) |
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353 | (2) |
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7.5 Equations of Motion for a Fluid Particle |
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355 | (2) |
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7.6 The Euler and Bernoulli Equations |
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357 | (4) |
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7.7 Potential Flow Hydrodynamics |
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361 | (1) |
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361 | (6) |
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7.9 The Potential Function |
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367 | (4) |
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7.10 Basic Two-Dimensional Flows |
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371 | (9) |
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7.11 Superposition of Flows |
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380 | (13) |
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7.12 The Navier--Stokes Equations |
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393 | (5) |
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7.13 Computational Fluid Dynamics |
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398 | (21) |
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8 Dimensional Analysis and Similitude |
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419 | (1) |
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8 Dimensional Analysis and Similitude |
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419 | (40) |
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419 | (1) |
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419 | (3) |
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8.2 Important Dimensionless Numbers |
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422 | (3) |
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8.3 The Buckingham Pi Theorem |
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425 | (9) |
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8.4 Some General Considerations Related to Dimensional Analysis |
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434 | (1) |
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435 | (24) |
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9 Viscous Flow within Enclosed Conduits |
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459 | (46) |
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459 | (1) |
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9.1 Steady Laminar Flow between Parallel Plates |
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459 | (6) |
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9.2 Navier--Stokes Solution for Steady Laminar Flow between Parallel Plates |
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465 | (5) |
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9.3 Steady Laminar Flow within a Smooth Pipe |
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470 | (4) |
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9.4 Navier--Stokes Solution for Steady Laminar Flow within a Smooth Pipe |
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474 | (2) |
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476 | (5) |
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9.6 Fully Developed Flow from an Entrance |
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481 | (2) |
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9.7 Laminar and Turbulent Shear Stress within a Smooth Pipe |
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483 | (3) |
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9.8 Steady Turbulent Flow within a Smooth Pipe |
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486 | (19) |
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10 Analysis and Design for Pipe Flow |
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505 | (1) |
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10 Analysis and Design for Pipe Flow |
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505 | (54) |
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505 | (1) |
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10.1 Resistance to Flow in Rough Pipes |
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505 | (14) |
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10.2 Losses Occurring from Pipe Fittings and Transitions |
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519 | (6) |
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10.3 Single-Pipeline Flow |
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525 | (7) |
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532 | (6) |
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538 | (21) |
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11 Viscous Flow over External Surfaces |
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559 | (80) |
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559 | (1) |
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11.1 The Concept of the Boundary Layer |
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559 | (6) |
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11.2 Laminar Boundary Layers |
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565 | (9) |
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11.3 The Momentum Integral Equation |
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574 | (4) |
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11.4 Turbulent Boundary Layers |
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578 | (2) |
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11.5 Laminar and Turbulent Boundary Layers |
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580 | (6) |
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586 | (2) |
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11.7 Pressure Gradient Effects |
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588 | (5) |
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11.8 The Drag Coefficient |
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593 | (4) |
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11.9 Drag Coefficients for Bodies Having Various Shapes |
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597 | (7) |
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11.10 Methods for Reducing Drag |
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604 | (4) |
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11.11 Lift and Drag on an Airfoil |
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608 | (31) |
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639 | (60) |
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639 | (1) |
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12.1 Types of Flow in Open Channels |
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639 | (2) |
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12.2 Open-Channel Flow Classifications |
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641 | (1) |
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642 | (8) |
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12.4 Open-Channel Flow over a Rise or Bump |
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650 | (4) |
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12.5 Open-Channel Flow under a Sluice Gate |
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654 | (4) |
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12.6 Steady Uniform Channel Flow |
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658 | (7) |
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12.7 Gradually Varied Flow |
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665 | (7) |
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672 | (5) |
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677 | (22) |
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Viscous Flow within Enclosed Conduits |
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|
459 | (240) |
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699 | (92) |
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|
699 | (1) |
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13.1 Thermodynamic Concepts |
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|
699 | (9) |
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13.2 Wave Propagation through a Compressible Fluid |
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|
708 | (3) |
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13.3 Types of Compressible Flow |
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|
711 | (4) |
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13.4 Stagnation Properties |
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|
715 | (7) |
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13.5 Isentropic Flow through a Variable Area |
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722 | (5) |
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13.6 Isentropic Flow through Converging and Diverging Nozzles |
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|
727 | (9) |
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13.7 The Effect of Friction on Compressible Flow |
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|
736 | (10) |
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13.8 The Effect of Heat Transfer on Compressible Flow |
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|
746 | (6) |
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752 | (3) |
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13.10 Shock Waves in Nozzles |
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|
755 | (5) |
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13.11 Oblique Shock Waves |
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|
760 | (5) |
|
13.12 Compression and Expansion Waves |
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|
765 | (5) |
|
13.13 Compressible Flow Measurement |
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|
770 | (21) |
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|
791 | (49) |
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|
791 | (1) |
|
14.1 Types of Turbomachines |
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|
791 | (1) |
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|
792 | (7) |
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|
799 | (3) |
|
14.4 Ideal Performance for Pumps |
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|
802 | (6) |
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808 | (7) |
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|
815 | (3) |
|
14.7 Cavitation and the Net Positive Suction Head |
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|
818 | (2) |
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14.8 Pump Selection Related to the Flow System |
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|
820 | (2) |
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14.9 Turbomachine Similitude |
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|
822 | (18) |
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|
|
A Physical Properties of Fluids |
|
|
840 | (6) |
|
B Compressible Properties of a Gas (k= 1.4) |
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|
846 | (11) |
Fundamental Solutions |
|
857 | (16) |
Answers to Selected Problems |
|
873 | (12) |
Index |
|
885 | |