This is completed downloadable of Heat and Mass Transfer SI Edition 2nd Edition Rolle Solutions Manual
Product Details:
- ISBN-10 : 130511258X
- ISBN-13 : 978-1305112582
- Author: Kurt Rolle
Thoroughly up-to-date and packed with real world examples that apply concepts to engineering practice, HEAT AND MASS TRANSFER, 2e, presents the fundamental concepts of heat and mass transfer, demonstrating their complementary nature in engineering applications. Comprehensive, yet concise, the book provides a solid introduction to the scientific, mathematical, and empirical methods for treating heat and mass transfer phenomena, along with the tools needed to assess and solve a variety of contemporary engineering problems. Practical guidance throughout helps readers learn to anticipate the reasonable answers for a particular system or process and understand that there is often more than one way to solve a particular problem.
Table of Content:
- Ch 1: Introduction
- Ch 1: Brief History
- 1-1: The Importance of Heat and Mass Transfer
- 1-2: Dimensions and Units in Heat and Mass Transfer
- 1-3: The Concepts of Heat and Mass Transfer
- 1-4: The Modes of Heat Transfer
- 1-5: The Modes of Mass Transfer
- 1-6: Mathematical Preliminaries
- 1-7: Engineering Analysis of Heat and Mass Transfer
- 1-8: Summary
- Ch 1: Discussion Questions
- Ch 1: Class Quiz Questions
- Ch 1: Practice Problems
- Ch 1: References
- Ch 2: Steady State Conduction Heat Transfer
- Ch 2: Brief History
- 2-1: Fourier’s Law and Thermal Conductivity
- 2-2: The General Problem of Conduction Heat Transfer
- 2-3: Steady State One-Dimensional Conduction Heat Transfer
- 2-4: Steady State Two-Dimensional Heat Transfer
- 2-5: Shape Factor Methods
- 2-6: Numerical Methods of Analysis
- 2-7: Applications of Steady State Heat Transfer
- 2-8: Summary
- Ch 2: Discussion Questions
- Ch 2: Class Quiz Questions
- Ch 2: Practice Problems
- Ch 2: References
- Ch 3: Transient Conduction Heat Transfer
- Ch 3: Brief History
- 3-1: General Problems in Transient Conduction
- 3-2: Lumped-Heat Capacity Systems
- 3-3: One-Dimensional Transient Heat Transfer
- 3-4: Two-Dimensional Transient Heat Transfer
- 3-5: Applications to Solids
- 3-6: Numerical Methods of Analysis
- 3-7: Graphical Methods
- 3-8: Summary
- Ch 3: Discussion Questions
- Ch 3: Class Quiz Questions
- Ch 3: Practice Problems
- Ch 3: References
- Ch 4: Forced Convection Heat Transfer
- Ch 4: Brief History
- 4-1: The General Problems of Convection Heat Transfer
- 4-2: Concepts of Fluid Flow and Dimensional Analysis
- 4-3: The Boundary Layer Concept
- 4-4: Convection Heat Transfer at a Flat Plate
- 4-5: Convection Heat Transfer around Objects
- 4-6: Convection Heat Transfer in Closed Channels
- 4-7: Applications of Convection Heat Transfer
- 4-8: Summary
- Ch 4: Discussion Questions
- Ch 4: Class Quiz Questions
- Ch 4: Practice Problems
- Ch 4: References
- Ch 5: Free Convection Heat Transfer
- Ch 5: Brief History
- 5-1: The General Concepts of Free Convection
- 5-2: Analysis of Free Convection along Vertical Surfaces
- 5-3: Free Convection along Horizontal and Inclined Surfaces
- 5-4: Free Convection along Horizontal and Vertical Cylinders
- 5-5: Free Convection in Enclosed Spaces
- 5-6: Combined Free and Forced Convection Heat Transfer
- 5-7: Approximate Equations for Free Convection of Air
- 5-8: Summary
- Ch 5: Discussion Questions
- Ch 5: Class Quiz Questions
- Ch 5: Practice Problems
- Ch 5: References
- Ch 6: The Nature of Radiation Heat Transfer
- Ch 6: Brief History
- 6-1: Electromagnetic Radiation
- 6-2: Black Body Radiation
- 6-3: Gray Body Mechanisms
- 6-4: Geometry of Radiation
- 6-5: Applications of Radiation
- 6-6: Summary
- Ch 6: Discussion Questions
- Ch 6: Class Quiz Questions
- Ch 6: Practice Problems
- Ch 6: References
- Ch 7: Analysis of Radiation Heat Transfer
- Ch 7: Brief History
- 7-1: Radiosity
- 7-2: Analysis of Two-Surface Radiation Heat Transfer
- 7-3: Analysis of Three-Surface Radiation Heat Transfer
- 7-4: Gas Radiation
- 7-5: Applications of Radiation Heat Transfer
- 7-6: Summary
- Ch 7: Discussion Questions
- Ch 7: Class Quiz Questions
- Ch 7: Practice Problems
- Ch 7: References
- Ch 8: Mass Transfer
- Ch 8: Brief History
- 8-1: The Mechanisms of Mass Transfer
- 8-2: Analysis of Mixtures
- 8-3: Diffusion Mass Transfer
- 8-4: Convection Mass Transfer
- 8-5: Transient Diffusion
- 8-6: Absorption and Adsorption
- 8-7: Permeability
- 8-8: Summary
- Ch 8: Discussion Questions
- Ch 8: Class Quiz Questions
- Ch 8: Practice Problems
- Ch 8: References
- Ch 9: Heat Exchangers
- Ch 9: Brief History
- 9-1: General Concepts of Heat Exchangers
- 9-2: Parameters in Heat Exchangers
- 9-3: LMTD Method of Analysis
- 9-4: Effectiveness-NTU Method of Analysis
- 9-5: Compact Heat Exchangers
- 9-6: Heat Pipes
- 9-7: Summary
- Ch 9: Discussion Questions
- Ch 9: Class Quiz Questions
- Ch 9: Practice Problems
- Ch 9: References
- Ch 10: Phase Change Heat Transfer
- What You Will Learn in Chapter 10
- 10-1: The Mechanisms of Phase Change Heat Transfer
- 10-2: Analysis of Boiling Heat Transfer
- 10-3: Condensing Heat Transfer
- 10-4: Simplified Relationships for Boiling and Condensing
- 10-5: Empirical Methods and Analysis of Melting and Freezing
- 10-6: Applications of Phase Change Heat Transfer
- 10-7: Summary
- Ch 10: Discussion Questions
- Ch 10: Class Quiz Questions
- Ch 10: Practice Problems
- Ch 10: References
- Appendix A: Mathematical Information
- Appendix B: Conversion Factors and Property Tables
- Appendix C: Psychrometrics and Charts
- Appendix D: Quantifying Comprehension and Understanding
- Answers to Odd-numbered Practice Problems
- Index
- End Paper
- IBC
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