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Fundamentals of Momentum, Heat, and Mass Transfer

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Chapter 1: Introduction to Momentum Transfer
Chapter 2: Fluid Statics
Chapter 3: Description of a Fluid in Motion
Chapter 4: Conservation of Mass: Control-Volume Approach
Chapter 5: Newton's Second Law of Motion: Control-Volume Approach
Chapter 6: Conservation of Energy: Control-Volume Approach
Chapter 7: Shear Stress in Laminar Flow
Chapter 8: Analysis of a Differential Fluid Element in Laminar Flow
Chapter 9: Differential Equations of Fluid Flow
Chapter 10: Inviscid Fluid Flow
Chapter 11: Dimensional Analysis and Similitude
Chapter 12: Viscous Flow
Chapter 13: Flow in Closed Conduits
Chapter 14: Fluid Machinery
Chapter 15: Fundamentals of Heat Transfer
Chapter 16: Differential Equations of Heat Transfer
Chapter 17: Steady-State Conduction
Chapter 18: Unsteady-State Conduction
Chapter 19: Convective Heat Transfer
Chapter 20: Convective Heat-Transfer Correlations
Chapter 21: Boiling and Condensation
Chapter 22: Heat-Transfer Equipment
Chapter 23: Radiation Heat Transfer
Chapter 24: Fundmentals of Mass Transfer
Chapter 25: Differential Equations of Mass Transfer
Chapter 26: Steady-State Molecular Diffusion
Chapter 27: Unsteady-State Molecular Diffusion
Chapter 28: Convective Mass Transfer
Chapter 29: Convective Mass Transfer Between Phases
Chapter 30: Convective Mass-Transfer Correlations
Chapter 31: Mass-Transfer Equipment

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The field¡¯s essential standard for more than three decades, Fundamentals of Momentum, Heat and Mass Transfer offers a systematic introduction to transport phenomena and rate processes. Thorough coverage of central principles helps students build a foundational knowledge base while developing vital analysis and problem solving skills. Momentum, heat, and mass transfer are introduced sequentially for clarity of concept and logical organization of processes, while examples of modern applications illustrate real-world practices and strengthen student comprehension. Designed to keep the focus on concept over content, this text uses accessible language and efficient pedagogy to streamline student mastery and facilitate further exploration.

Abundant examples, practice problems, and illustrations reinforce basic principles, while extensive tables simplify comparisons of the various states of matter. Detailed coverage of topics including dimensional analysis, viscous flow, conduction, convection, and molecular diffusion provide broadly-relevant guidance for undergraduates at the sophomore or junior level, with special significance to students of chemical, mechanical, environmental, and biochemical engineering.

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