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Klappentext Written by dedicated educators who are also real-life engineers with a passion for the discipline, Engineering Fluid Mechanics, 10th Edition, carefully guides students from fundamental fluid mechanics concepts to real-world engineering applications.The Tenth Edition and its accompanying resources deliver a powerful learning solution that helps students develop a strong conceptual understanding of fluid flow phenomena through clear physical descriptions, relevant and engaging photographs, illustrations, and a variety of fully worked example problems. Packed with more than 1,100 problems-- including open-ended design problems and computer-oriented problems--this text offers ample opportunities for students to apply fluid mechanics principles as they build knowledge in a logical way and enjoy the journey of discovery. Zusammenfassung The Tenth Edition of Crowe's Engineering Fluid Mechanics builds upon the strengths and success of the previous edition, including a focus on pedigogical support and deep integration with WileyPLUS, providing considering deeper support for development of conceptual understanding and problem solving. Inhaltsverzeichnis PREFACECHAPTER 1: Building a Solid FoundationCHAPTER 2: Fluid PropertiesCHAPTER 3: Fluid StaticsCHAPTER 4: The Bernoulli Equation and Pressure VariationCHAPTER 5: Control Volume Approach and Continuity EquationCHAPTER 6: Momentum EquationCHAPTER 7: The Energy EquationCHAPTER 8: Dimensional Analysis and SimilitudeCHAPTER 9: Predicting Shear ForceCHAPTER 10: Flow in ConduitsCHAPTER 11: Drag and LiftCHAPTER 12: Compressible FlowCHAPTER 13: Flow MeasurementsCHAPTER 14: TurbomachineryCHAPTER 15: Flow in Open ChannelsCHAPTER 16: Modeling of Fluid Dynamics ProblemsAppendixAnswersIndex
Table des matières
PREFACE
CHAPTER 1: Building a Solid Foundation
CHAPTER 2: Fluid Properties
CHAPTER 3: Fluid StaticsCHAPTER 4: The Bernoulli Equation and Pressure Variation
CHAPTER 5: Control Volume Approach and Continuity Equation
CHAPTER 6: Momentum Equation
CHAPTER 7: The Energy Equation
CHAPTER 8: Dimensional Analysis and Similitude
CHAPTER 9: Predicting Shear Force
CHAPTER 10: Flow in Conduits
CHAPTER 11: Drag and Lift
CHAPTER 12: Compressible Flow
CHAPTER 13: Flow Measurements
CHAPTER 14: Turbomachinery
CHAPTER 15: Flow in Open Channels
CHAPTER 16: Modeling of Fluid Dynamics Problems
Appendix
Answers
Index