Download Mechanics of Materials, by James M. Gere, Stephen P. Timoshenko
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Mechanics of Materials, by James M. Gere, Stephen P. Timoshenko
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This is a classic text which has set the standard for courses in mechanics and strength of materials. A perennial best-seller on the PWS list, it emphasizes the fundamental concepts and applications of strength of materials while developing students analytical and problem solving skills. The Fourth Edition has been fully revised to include more teaching detail in the text explanations and worked examples, a more natural and logical topic sequence, and enhanced problem sets. The artwork in this edition has been completely redone, and a new Mathcad based computer supplement has been added.
- Sales Rank: #286021 in Books
- Brand: Brand: Pws Pub Co
- Published on: 1996-11-22
- Original language: English
- Number of items: 1
- Dimensions: 9.50" h x 8.50" w x 1.50" l,
- Binding: Hardcover
- 912 pages
- Used Book in Good Condition
About the Author
James M. Gere (1925-2008) earned his undergraduate and master's degree in Civil Engineering from the Rensselaer Polytechnic Institute in 1949 and 1951, respectively. He worked as an instructor and later as a Research Associate for Rensselaer. He was awarded one of the first NSF Fellowships, and chose to study at Stanford. He received his Ph.D. in 1954 and was offered a faculty position in Civil Engineering, beginning a 34-year career of engaging his students in challenging topics in mechanics, and structural and earthquake engineering. He authored nine texts on various engineering subjects starting in 1972 with Mechanics of Materials. He served as Department Chair and Associate Dean of Engineering and in 1974 co-founded the John A. Blume Earthquake Engineering Center at Stanford. In 1980, Jim Gere also became the founding head of the Stanford Committee on Earthquake Preparedness. That same year, he was invited as one of the first foreigners to study the earthquake-devastated city of Tangshan, China. Jim retired from Stanford in 1988 but continued to be an active and most valuable member of the Stanford community.
Most helpful customer reviews
4 of 4 people found the following review helpful.
The Best Fundamental Mechanics Book You Can Buy
By K. Lyman
Have used this book as a resource for many classes. All of my professors said this is "The Book" for basic Mechanics, and I would agree with them.
Granted, Fatigue, Failure are Buckling analysis are fairly limited. Other advanced topics such as vibrations, FEM and plate theory are not covered. That's because this is a fundamental text, but don't let that fool you. The depth covered and the clarity of presentation is amazing for a Mechanics textbook.
If your looking for more complex analysis, get one of Timoshenko's books (the father of modern mechanics). Really, this book is primarily Timoshenko's work, Gere helps make it understandable. For the FEM, a good book is a difficult find.
This is the best selling Mechanics book for a reason. There has only been minor changes since the original Timoshenko-Gere 1972 version. If your professor does not use this book, he has not been teaching long enough.
24 of 31 people found the following review helpful.
Beams, Beams, and more Beams
By A Customer
I know that this is considered THE mechanics of materials textbook. And paging through it, you can see that the text and figures are very well done, with every effort made to make the material clearly accessible. So in this respect, the book shines. My main objection with this text is its content. Every imaginable method of beam analysis is presented, and the tendency is to treat every stress problem as some sort of beam. Thus if you're a civil engineer designing beams, you'll probably like this book. But if you are a mechanical engineer, responsible for designing mating parts with complex geometries, you'll be sorrily disappointed. Mechanical parts in the real world are not prismatic beams, perfect cylinders, and other utopian forms. They have threads, fillets, holes and other discontinuities that produce stress concentrations -- stress concentrations that have devastating effects in fatigue if not properly accounted for. I know that some will say "Hey, if you want fatigue analysis, get a Machine Design text". But come on, let's be realistic. Many undergrad students will never go on to take such a course, and the fact that well over 90% of real world failures are fatigue failures necessitates that more than 10 pages out of 900 be dedicated to this subject. Also, there is little if any coverage on 3-dimensional stress, plate and shell theory, plasticity, tensors, and a ton of other stuff that is not overly complex, but is used everywhere in the real world. I don't care how "elementary" the book claims to be. If it's over 900 pages, it should cover these important topics. Maybe someday we'll have more practicing engineers writing textbooks -- textbooks that treat real life problems, rather than fictional, academic idealizations.
6 of 8 people found the following review helpful.
Mechanics of Materials, 4th ed.
By Michael Drinkwater
I am a civil engineering student who just finished a course in stregth of materials with this text. I found the book fairly easy to follow with good example problems. My main complaint is that the authors consistantly referred to diagrams and figures that were on different pages, causing the reader to flip back and forth. Sometimes the figures were 5 or 6 pages back. This interrupted the continuity of the text, making it more difficult to read. Otherwise, I feel the book is excellent. (If you care, I got an A- in the course. Take this however you want to)
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