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Mechanics of Fluids by Potter
US $32,99
CircaEUR 28,42
Condizione:
“Used book in good condition. Shows typical wear. Quick shipping. Satisfaction guaranteed!”
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Libro che è già stato letto ma è in buone condizioni. Mostra piccolissimi danni alla copertina incluse alcune rigature, ma nessun foro o strappo. È possibile che la sovraccoperta per le copertine rigide non sia inclusa. La rilegatura presenta minimi segni di usura. La maggior parte delle pagine non è danneggiata e mostra una quantità minima di piegature o strappi, sottolineature di testo a matita, nessuna evidenziazione di testo né scritte ai margini. Non ci sono pagine mancanti. Per maggiori dettagli e la descrizione di eventuali imperfezioni, consulta l'inserzione del venditore.
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Spedizione:
US $6,99 (circa EUR 6,02) USPS Media MailTM.
Oggetto che si trova a: Multiple Locations, Stati Uniti
Consegna:
Consegna prevista tra il sab 18 ott e il ven 24 ott a 94104
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Restituzioni entro 30 giorni. Le spese di spedizione del reso sono a carico dell'acquirente..
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Numero oggetto eBay:187605653067
Specifiche dell'oggetto
- Condizione
- Buone condizioni
- Note del venditore
- “Used book in good condition. Shows typical wear. Quick shipping. Satisfaction guaranteed!”
- Book Title
- Mechanics of Fluids
- Topic
- Mechanical
- Narrative Type
- Mechanical
- Genre
- N/A
- Intended Audience
- N/A
- ISBN
- 9781305635173
Informazioni su questo prodotto
Product Identifiers
Publisher
Course Technology
ISBN-10
1305635175
ISBN-13
9781305635173
eBay Product ID (ePID)
234970533
Product Key Features
Number of Pages
816 Pages
Language
English
Publication Name
Mechanics of Fluids
Publication Year
2016
Subject
Mechanics / Fluids, Mechanical
Type
Textbook
Subject Area
Technology & Engineering, Science
Series
Mindtap Course List Ser.
Format
Hardcover
Dimensions
Item Height
1.4 in
Item Weight
56.1 Oz
Item Length
10.2 in
Item Width
8.2 in
Additional Product Features
Edition Number
5
Intended Audience
College Audience
Reviews
"There are many learning benefits to this textbook, viz. Key Concepts, Margin definitions, Fundamentals of Engineering problem section. However, the unique approach that Drs. Potter and Wiggert take to breakdown complex concepts of fluid mechanics and provide an easy to follow and succinate textbook is amazing. The authors have done an exceptional job in assembling a comprehensive textbook. One of the strongest attributes of this textbook is the addition of FE/EIT exam examples. The authors do not teach to the FE exam, but rather enhance their product with the addition of these examples. Without question, these two (Drs. Potter and Wiggert) are the exemplary instructors that every engineering college envisions. The highlights of "key concepts" and margin definition are a benefit for both student and instructor. This is a difficult topic from many lower-division engineering students. The presentation by the authors is the most comprehensive yet straightforward approach I have seen to date. Readability and presentation of complex concepts is a true strength of this textbook.", I like it (the level of presentation). The students appear to like it. The boxes in the margins are nice in that they point out the key concepts. I use the book in my class and have used it for a number of years., "The text is written at a level that provides more than adequate materials for the very good students and "required" basics for the average student. Progression in presenting the topics and sections of chapters is smooth. The text is balanced in exposing theoretical materials followed by examples/illustrations. Texts in fluids mechanics have evolved over many years to do this and this text does a great job of this. Examples and their frequency/breadth of coverage is appropriate. The problem-solving methodology in the examples is done extremely well. Illustrations are very well done."
Dewey Edition
20
Dewey Decimal
532
Table Of Content
1. BASIC CONSIDERATIONS. Introduction. Dimensions, Units, and Physical Quantities. Continuum View of Gases and Liquids. Pressure and Temperature Scales. Fluid Properties. Conservation Laws. Thermodynamic Properties and Relationships. Summary. Problems. 2. FLUID STATICS. Introduction. Pressure at a Point. Pressure Variation. Fluids at Rest. Linearly Accelerating Containers. Rotating Containers. Summary. Problems. 3. INTRODUCTION TO FLUIDS IN MOTION. Introduction. Description of Fluid Motion. Classification of Fluid Flows. The Bernoulli Equation. Summary. Problems. 4. THE INTEGRAL FORMS OF THE FUNDAMENTAL LAWS. Introduction. The Three Basic Laws. System-to-Control-Volume Transformation. Conservation of Mass. Energy Equation. Momentum Equation. Moment-of-Momentum Equation. Summary. Problems. 5. THE DIFFERENTIAL FORMS OF THE FUNDAMENTAL LAWS. Introduction. Differential Continuity Equation. Differential Momentum Equation. Differential Energy Equation. Summary. Problems. 6. DIMENSIONAL ANALYSIS AND SIMILITUDE. Introduction. Dimensional Analysis. Similitude. Normalized Differential Equations. Summary. Problems. 7. INTERNAL FLOWS. Introduction. Entrance Flow and Developed Flow. Laminar Flow in a Pipe. Laminar Flow between Parallel Plates. Laminar Flow between Rotating Cylinders. Turbulent Flow in a Pipe. Uniform Turbulent Flow in Open Channels. Summary. Problems. 8. EXTERNAL FLOWS. Introduction. Separation. Flow Around Immersed Bodies. Lift and Drag on Airfoils. Potential-Flow Theory. Boundary-Layer Theory. Summary. Problems. 9. COMPRESSIBLE FLOW. Introduction. Speed of Sound and the Mach Number. Isentropic Nozzle Flow. Normal Shock Wave. Shock Waves in Converging-Diverging Nozzles. Vapor Flow through a Nozzle. Oblique Shock Wave. Isentropic Expansion Waves. Summary. Problems. 10. FLOW IN OPEN CHANNELS. Introduction. Open-Channel Flows. Uniform Flow. Energy Concepts. Momentum Concepts. Nonuniform Gradually Varied Flow. Numerical Analysis of Water Surface Profiles. Summary. Problems. 11. FLOWS IN PIPING SYSTEMS. Introduction. Losses in Piping Systems. Simple Pipe Systems. Analysis of Pipe Networks. Unsteady Flow in Pipelines. Summary. Problems. 12. TURBOMACHINERY. Introduction. Turbopumps. Dimensional Analysis and Similitude for Turbomachinery. Use of Turbopumps in Piping Systems. Turbines. Summary. Problems. 13. MEASUREMENTS IN FLUID MECHANICS. Introduction. Measurement of Local Flow Parameters. Flow Rate Measurement. Flow Visualization. Data Acquisition and Analysis. Summary. Problems. 14. COMPUTATIONAL FLUID DYNAMICS. Introduction. Examples of Finite-Difference Methods. Stability, Convergence, and Errors. Solution of Couette Flow. Solution of Two-Dimensional Steady-State Potential Flow. Summary. References. Problems. APPENDIX A. UNITS AND CONVERSIONS AND VECTOR RELATIONSHIPS APPENDIX B. FLUID PROPERTIES APPENDIX C. PROPERTIES OF AREAS AND VOLUMES APPENDIX D. COMPRESSIBLE-FLOW TABLES FOR AIR APPENDIX E. NUMERICAL SOLUTIONS FOR CHAPTER 10 APPENDIX F. NUMERICAL SOLUTIONS FOR CHAPTER 11 BIBLIOGRAPHY. References. General Interest. ANSWERS TO SELECTED PROBLEMS. INDEX.
Synopsis
Gain an understanding of fluid mechanics and the ability to analyze this important phenomena encountered by practicing engineers with MECHANICS OF FLUIDS, 5E. The authors use proven learning tools to help you visualize many difficult-to-understand aspects of fluid mechanics. The mathematics used in derivations are readily accessible to you as an undergraduate engineering student. This edition's accompanying Multimedia Fluid Mechanics DVD-ROM helps you gain insights and develop intuition about fluid flow as you view mathematical relationships through movies and conduct actual simulations. The book's companion website includes mini-exams and solutions as well as video tutorials to assist you in further mastering fluid mechanics as an emerging professional.
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