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Free Download Fluid Mechanics

Free Download Fluid Mechanics

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Fluid Mechanics

Fluid Mechanics


Fluid Mechanics


Free Download Fluid Mechanics

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Fluid Mechanics

About the Author

Frank M White is Professor Emeritus of Mechanical and Ocean Engineering at the University of Rhode Island. He studied at Georgia Tech and M.I.T. In 1966 he helped found, at URI, the first department of ocean engineering in the country. Known primarily as a teacher and writer, he has received eight teaching awards and has written four textbooks on fluid mechanics and heat transfer. From 1979 to 1990 he was editor-in-chief of the ASME Journal of Fluids Engineering and then served from 1991 to 1997 as chairman of the ASME Board of Editors and of the Publications Committee. He is a Fellow of ASME and in 1991 received the ASME Fluids Engineering Award.

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Product details

Hardcover: 864 pages

Publisher: McGraw-Hill Education; 8 edition (January 16, 2015)

Language: English

ISBN-10: 0073398276

ISBN-13: 978-0073398273

Product Dimensions:

8.3 x 1.5 x 9.2 inches

Shipping Weight: 3.4 pounds (View shipping rates and policies)

Average Customer Review:

4.1 out of 5 stars

51 customer reviews

Amazon Best Sellers Rank:

#94,302 in Books (See Top 100 in Books)

I have to state a few things before I go into this review. At my university this course is supposed to come after calculus 3 (vector calculus i.e. triple and double integration, vector fields, etc) and after differential equations. Also usually after a numerical analysis course, I took a graduate level numerical analysis and methods course before I started this course. I also had DE and linear algebra finished so overall my math background is very solid. I also took physics up to quantum for electives so my physics background is also solid.With all that being said this book takes a physics and mathematical approach over the standard engineering textbooks out there. So a lot of the equations that it derives at times will be a little different then what you will use on problems. You will also need to know to make a lot of assumptions that it never goes over. This is where a strong professor comes in. You will need to take a professor that not only derives equations but explains the assumptions for each type of problem. This will cause a lot of the double and triple integrals to become a simple integration many times. There are quite a number of times you will need to know how to set up a differential equation and also be able to solve it using different methods. There are problems were you will need to interpolate a function over a interval [a,b] in order to derive an answer. Linear systems for multiple unknowns are common in some problems as well.The problems lies in the fact that the examples in the book are VERY weak at times and do not show how to go about doing a lot of these things that I mentioned. This means that you are limited in teaching yourself, unless of course you use the solution manual, which also skips many steps. You will need to fill in the steps yourself. Also don't think you can run to Chegg a lot of their answers are wrong and also skip steps, since Chegg just copies the solution manual for 95% of problems.Overall it is a good book if you have a solid foundation but if you are missing courses that this book assumes you have taken you may be in for a rough ride. I cannot give it five stars since I believe a textbook should be able to teach a student 80% of material in a course especially at the price charged.Hope this helps!

Five years ago, I took my first course in fluid mechanics using this book by F. White; now I am a graduate student in the field. This book was the first to instill upon me a desire to pursue advanced studies in the dynamics of fluids.The major strength of this book is that it is remarkably un-assuming of the reader. Most of the topics discussed are self-contained with much of the physics and mathematics expressed within accessible bounds to a young, becoming Mechanical Engineer. In particular, the book contains many good, fully worked-out examples and problems.To begin, the first section is on hydrostatics, and although the physics is fairly simple, we observe how to deal with the difficulties of handling the geometry of the system. In particular, we learn how to calculate force and moment on a dam of varying profile.The next section focuses on control volume (CV) analysis: this systematic technique of problem solving is perhaps the monkey wrench of mechanical engineering. A very very large number of problems can be solved with this approach, and many more can be approximated with it. F. White does a fantastic job of using CV analysis with regards to the most important physical quantities: momentum, moment, energy, and mass. Again, the book is filled with a number of fully-worked examples and even more end-of-chapter problems.We next move into the heart of fluid dynamics, that is the differential equations of momentum and mass. Here, the author takes a lot of care in deriving the partial differential equations (PDE's) with the aid of numerous illustrations. Illustrations in engineering context cannot be under-estimated, and the author seems whole-heartedly agree. Although the equations of motion are not derived in the most fundamental way, it is quite insightful and wholly sufficient for an engineer beginning their training. In this way, however, I believe that physics students *would not benefit* from this approach. Although I am ignorant of resources more germane to their field of study, I cannot recommend this text to them.The last topic I will include in this review regards the coverage of viscous effects in duct flow. This will most likely be the students first foray into non-dimensional parameters and the text justifiably over-emphasizes its importance. When I first studied this topic in class, the purpose of non-dimensionalising variables seemed abstruse and round-about; however, today I am very grateful for the efforts spent on this mode of thought since I can now appreciate the science of approximation and the error associated with the computation of quantities of various orders of magnitude.The text covers a few more topics, but the key engineering tools are mentioned above. For a more advanced/thorough/mathematical text, look to Kundu's classical book "Fluid Mechanics" as a follow-up.

Thorough explanation of fluid mechanics with plenty of practice problems to ensure understanding.

Helped me learn Fluid Mechanics better than going to lectures ever did.

Exactly what I expected. It is a real shame that the US version cost over 10x's more than this book.

This is the special Indian edition, meaning the number values in the problem sections will be different compared to a standard 8th edition book.

I used this book for an undergrad fluid mechanics course. The book is well written, however I eventually gave up on trying to read and understand it. It seems is written by a really smart person and most of the time I found the material in the book to be over my head. A lot of my classmates thought the same thing too. I often thought that this textbook is more suited for graduate level students.However the book keeps true to fluid mechanics and does not include a lot of unnecessary "filler" material that some textbooks do.By filler material I mean stuff that is related to the subject but not necessary for the the understanding of the material.

The book is in great condition as described and the binding is good no contents missing

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