Fundamentals of Fluid Mechanics 7th edition by Bruce Munson, Donald Young, Theodore Okiishi – Ebook PDF Instant Download/Delivery.1118214595, 9781118214596
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Product details:
ISBN 10: 1118214595
ISBN 13: 9781118214596
Author: Bruce R. Munson; Donald F. Young; Theodore H. Okiishi
Fundamentals of Fluid Mechanics is THE best-selling fluid mechanics text for a reason – it offers comprehensive topical coverage, with varied examples and problems, application of the visual component of fluid mechanics, and a strong focus on effective learning to help students connect theory to the physical world. The text enables the gradual development of confidence in problem solving. Each important concept is introduced in easy-to-understand terms before more complicated examples are discussed. Continuing this book’s tradition of extensive real-world applications, this latest edition includes new problem types, an increased number of real-world photos, and additional videos to augment the text material and help support visualization skill building and engage users more deeply with the material and concepts.
Fundamentals of Fluid Mechanics 7th Table of contents:
1 Introduction
- Learning Objectives
- 1.1 Some Characteristics of Fluids
- 1.2 Dimensions, Dimensional Homogeneity, and Units
- 1.2.1 Systems of Units
- 1.3 Analysis of Fluid Behavior
- 1.4 Measures of Fluid Mass and Weight
- 1.4.1 Density
- 1.4.2 Specific Weight
- 1.4.3 Specific Gravity
- 1.5 Ideal Gas Law
- 1.6 Viscosity
- 1.7 Compressibility of Fluids
- 1.7.1 Bulk Modulus
- 1.7.2 Compression and Expansion of Gases
- 1.7.3 Speed of Sound
- 1.8 Vapor Pressure
- 1.9 Surface Tension
- 1.10 A Brief Look Back in History
- 1.11 Chapter Summary and Study Guide
- References
- Review Problems
- Conceptual Questions
- Problems
2 Fluid Statics
- Learning Objectives
- 2.1 Pressure at a Point
- 2.2 Basic Equation for Pressure Field
- 2.3 Pressure Variation in a Fluid at Rest
- 2.3.1 Incompressible Fluid
- 2.3.2 Compressible Fluid
- 2.4 Standard Atmosphere
- 2.5 Measurement of Pressure
- 2.6 Manometry
- 2.6.1 Piezometer Tube
- 2.6.2 U-Tube Manometer
- 2.6.3 Inclined-Tube Manometer
- 2.7 Mechanical and Electronic Pressure-Measuring Devices
- 2.8 Hydrostatic Force on a Plane Surface
- 2.9 Pressure Prism
- 2.10 Hydrostatic Force on a Curved Surface
- 2.11 Buoyancy, Flotation, and Stability
- 2.11.1 Archimedes’ Principle
- 2.11.2 Stability
- 2.12 Pressure Variation in a Fluid with Rigid-Body Motion
- 2.12.1 Linear Motion
- 2.12.2 Rigid-Body Rotation
- 2.13 Chapter Summary and Study Guide
- References
- Review Problems
- Conceptual Questions
- Problems
3 Elementary Fluid Dynamics—The Bernoulli Equation
- Learning Objectives
- 3.1 Newton’s Second Law
- 3.2 F = ma along a Streamline
- 3.3 F = ma Normal to a Streamline
- 3.4 Physical Interpretation
- 3.5 Static, Stagnation, Dynamic, and Total Pressure
- 3.6 Examples of Use of the Bernoulli Equation
- 3.6.1 Free Jets
- 3.6.2 Confined Flows
- 3.6.3 Flowrate Measurement
- 3.7 The Energy Line and the Hydraulic Grade Line
- 3.8 Restrictions on Use of the Bernoulli Equation
- 3.8.1 Compressibility Effects
- 3.8.2 Unsteady Effects
- 3.8.3 Rotational Effects
- 3.8.4 Other Restrictions
- 3.9 Chapter Summary and Study Guide
- References
- Review Problems
- Conceptual Questions
- Problems
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