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Mechanics (3rd Edition), by Keith R. Symon
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This text is intended as the basis for an intermediate course in mechanics at the undergraduate level. Such a course, as essential preparation for advanced work in physics, has several major objectives. It must develop in the student a thorough understanding of the fundamental principles of mechanics. It should treat in detail certain specific problems of primary importance in physics, for example, the harmonic oscillator and the motion of a particle under a central force.
- Sales Rank: #129625 in Books
- Published on: 1971-01-11
- Original language: English
- Number of items: 1
- Dimensions: 8.90" h x 1.50" w x 6.50" l, 2.15 pounds
- Binding: Paperback
- 639 pages
Most helpful customer reviews
23 of 25 people found the following review helpful.
Symon a bad book? , I dont agree
By Graham M. Flower
I have used this book extensively over many years. I have found it to be very clear and straightforward. It is fairly mathematical but nothing beyond the normal freshman/sophmore college mathematics is really needed. The problem set is excellent over 400 problems are in this book and although there are some pretty easy ones there are some real killers in there as well. Try 3.56, the effect of the earth's oblateness on satellite orbits, for example. I spent many days on this one, and I was a very good student. (the real killers are usually designated by a star). It is true that Symon does not include many examples explicitly in his book but there are easy problems in the problem sets which serve the same purpose. At some point a student needs to be able to work from a set of physical principles without examples, because when you are working on an original problem later in industry or grad school there are no examples. Symon expects this and so he is a bit more demanding than some other authors. I find Symon's mathematical development easy to follow and quite good. This is my favorite mechanics textbook and I own more than 20. There are answers to about half the problems in the book and the book is pretty free of errors and typos. (a nice feature for me) Please also note that this book has been in print for 50 years, how many poor books is that true of.
23 of 25 people found the following review helpful.
Great undergraduate text! perfect Goldstein supplement!
By Charzi
This book and Goldstein's Mechanics is all you will ever need as a practicing physicist. Symon's book has great detail and is written in a clearly understandable style that is perfect for a 2 semester course in mechanics at the advanced undergraduate level. It will also serve you well as a supplement to Goldstein's mechanics, with more examples and explicit detailed calculations, which show the steps that Goldstein sometimes glosses over.
Overall an excellent text, I have yet to see a better mechanics book at this level. I just wonder when a new edition is due out, its probably the only reason people don't use this text as THE STANDARD for all undergraduate mechanics courses.
In any event, if your studying mechanics this is the book to have!
11 of 12 people found the following review helpful.
All you need to know in classical Mechanics
By Giant Panda
This is an excellent introductory text in classical mechanics, which bridges the gap between Freshman physics and advanced texts like Goldstein. It contains a good mix between equations and physical insight and understanding, providing many physical explanations to some concepts that are rarely found in other texts. Due to its considerable scope, the book is quite dense with information (over 600 pages). To keep the number of equations manageable, Symon resorts to skipping many straightforward steps in derivations and to leaving much "as an exercise for the reader". This is not a problem, for in most cases he leaves sufficient instructions that the careful reader can arrive at the same results, but make sure you have a pen and lots of paper nearby when reading it!
The level of discussion goes well beyond that of Freshman physics, and introduces more realistic complexities such as nonlinearity, precession, non-spherical shapes, etc. At the same time, it does not rely much on advanced mathematics, thus it is easily within the grasp of undergraduate students. Any mathematics beyond Freshman Calculus that is used is Freshman Calculus is explained in the text. The book covers many topics, among which I found the following to be well-presented:
1. Excellent explanation and philosophical definition of basic quantities like mass, force, and momentum.
2. A brief introduction to vector analysis and coordinate systems.
3. A brief (and excellent) introduction to tensors as they apply in physics.
4. A near complete analysis of the harmonic oscillator in 1, 2, and 3 dimensions, as well as coupled harmonic oscillators.
5. The pendulum and rigid rotations.
6. Moving and rotating coordinate systems.
7. Inertia and free rotation.
8. Central force problems
9. Newtonian gravitation and planetary motion.
10. N-body problem, with a thorough analysis of the 3-body problem (as far as can be achieved analytically).
11. Brief introduction to Lagrangian formulation [though I wish he included more solved examples in this section]
12. Wave and fluid dynamics.
13. Small vibrations, stability, and perturbation theory.
My biggest complaint about the second edition was the difficulty of the problems. That edition lacked easy problems with which to reinforce understanding of the text before tackling the harder ones. This problem was corrected in the 3rd edition, which adds a lot more (easier) problems to many chapters, and reorganizes the problems to follow the order of the text. This makes it much more useful, though I warn that some of the problems (especially the asterisked ones) are really hard! The answers at the back of the book are not perfect either and have some mistakes. The 3rd edition also added two chapters on special relativity and relativistic dynamics that I found quite useful and well-presented.
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