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Engineering Mechanics: Statics - Computational Edition - SI Version, by Robert W. Soutas-Little, Daniel J. Inman, Daniel Balint
Get Free Ebook Engineering Mechanics: Statics - Computational Edition - SI Version, by Robert W. Soutas-Little, Daniel J. Inman, Daniel Balint
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Focusing on the conceptual understanding of mechanics, this exciting new text addresses developments in the methods of analyzing mechanics problems. It fully incorporates the highly sophisticated computational software packages currently available to students. The text provides transition material to higher level courses, as well as a wealth of problems to foster understanding. All sample problems and the use of computational software (MathCAD, MATLAB, Mathematica and Maple) are presented in four seperate manuals (one for each software program). Each manual explains how to use the software package to solve the example problems in the book.
- Sales Rank: #4550395 in Books
- Published on: 2007-11-02
- Original language: English
- Number of items: 1
- Dimensions: 9.89" h x .68" w x 7.99" l, 1.94 pounds
- Binding: Paperback
- 496 pages
Most helpful customer reviews
1 of 1 people found the following review helpful.
Fairly Good
By Dingyi Sun
Engineering Mechanics: Statics is a fairly decent book for an introductory course into Statics, which is the first course one can take in Engineering at my school. The book covers a fair amount of topics and, for the purposes of our class, went beyond what was required by the course. The book makes solid use of calculus - both single and multivariable - where necessary and does not do more "handwaving" than necessary. As for its drawbacks, however, the book does make quite a lot of errors in its solutions key that proved to be somewhat frustrating when I attempted to review material by myself and found that I couldn't get the same answers as the solutions key. Additionally, some of the diagrams are constructed in a very confusing manner and it is nearly impossible to pick out the dimensions of the diagram (i.e, does this joint have a z-component or not). The author should've probably taken some extra time ensuring that the diagrams were well-put out instead of assuming that the reader knew everything. Additionally, some topics, such as the Method of Sections, lacked explanatory depth and I would've appreciated it if the author had gone a little further into its technique instead of just glancing over it. However, when all's said and done, this is still a fairly good book for an introductory course in Statics and Engineering. However, I think there are probably better alternatives out there.
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