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Mathematical Methods for Physicists, Fifth Edition
 
 
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Mathematical Methods for Physicists, Fifth Edition [Hardcover]

George B. Arfken (Author), Hans J. Weber (Author), Frank Harris (Author)
2.8 out of 5 stars  See all reviews (62 customer reviews)


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Mathematical Methods for Physicists, Seventh Edition: A Comprehensive Guide Mathematical Methods for Physicists, Seventh Edition: A Comprehensive Guide
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Book Description

0120598256 978-0120598250 November 1, 2000 5
Through four editions, Arfken and Weber's best-selling Mathematical Methods for Physicists has provided upper-level undergraduate and graduate students with the paramount coverage of the mathematics necessary for advanced study in physics and engineering. It provides the essential mathematical methods that aspiring physicists are likely to encounter as students or beginning researchers. Appropriate for a physics service course, as well as for more advanced coursework, this is the book of choice in the field.

* Provides the essential mathematical methods that aspiring physicists are likely to encounter as students or beginning researchers
* * Serves as both text and useful reference for students of physics and applied mathematics
* * Throughout the text the physical relevance of the mathematics is constantly reinforced


Editorial Reviews

Review

"As to a comparison with other books of the same ilk, well, in all honesty, there are none. No other text on methods of mathematical physics is as comprehensive and as complete...I encourage the students to keep their copies as they will need it and will find it an invaluable reference resource in later studies and research."
- Tristan Hubsch, Howard University


--This text refers to an alternate Hardcover edition.

Book Description

More that 90,000 copies sold! --This text refers to an alternate Hardcover edition.

Product Details

  • Hardcover: 1112 pages
  • Publisher: Academic Press; 5 edition (November 1, 2000)
  • Language: English
  • ISBN-10: 0120598256
  • ISBN-13: 978-0120598250
  • Product Dimensions: 9.5 x 6.6 x 1.8 inches
  • Shipping Weight: 4 pounds
  • Average Customer Review: 2.8 out of 5 stars  See all reviews (62 customer reviews)
  • Amazon Best Sellers Rank: #581,460 in Books (See Top 100 in Books)

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Customer Reviews

62 Reviews
5 star:
 (15)
4 star:
 (6)
3 star:
 (9)
2 star:
 (18)
1 star:
 (14)
 
 
 
 
 
Average Customer Review
2.8 out of 5 stars (62 customer reviews)
 
 
 
 
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Most Helpful Customer Reviews

50 of 52 people found the following review helpful:
2.0 out of 5 stars Why Is This Textbook So Widely Used?, November 13, 2006
By 
Robert Evans (Dallas, TX, USA) - See all my reviews
(REAL NAME)   
I am a graduate physics student with a strong mathematical background. This is the textbook used for our 2 semester course in mathematical methods for physics. The book is massive, both in content and physical weight. The cover is attractive and the printing seems to be fairly high quality. Now comes the difficult part of the review: finding other positive comments. First of all, I have only used a few chapters of the book thus far, so my comments pertain only to those. Some difficulties I have found... There are no answers to any exercises making the book fairly useless for self-study. The material is very uneven, as if each section was written by a different author (graduate student?). The explanations and examples are mediocre at best (contrast with the Mary Boas book). There are MANY typos - what ever happened to proof reading? The class INSTRUCTOR doesn't like the book, but is forced to use it by the department, and has regularly emailed the authors with corrections and recommendations. None of the students in the class like the book. You may be forced to use this book, but I would recommend other books as supplements (e.g., the book by Mary Boas and several in the Schaum Outline Series).
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29 of 29 people found the following review helpful:
1.0 out of 5 stars An undergraduate review, November 30, 1999
My instructor chose Arfken as the text for our Mathematical Physics class. He has a high opinion of the book, although he did not require it to be read and did not assign any of the exercises. Rather than using Arfken, most of the students in my class used various mathematics and physics books from the university library. My opinion of Arfken is that it is so condensed that it is not understandable to undergraduates. You need to consult other texts extensively to fill in the gaps. For example, Arfken develops tensor analysis on pages 126 thru 130, 5 pages total. My copy of Applications of Tensor Analysis by McConnell does the same on it's first 171 pages. I hesitate to say that Arfken is useless, but you can draw your own conclusion from my last example. Arfken is so abbreviated that it is not useful to the undergraduate as a reference either, in my opinion. Perhaps it is useful to persons who are familiar with the subject matter in advance, I am not sure. Were one or a group of people to flush this book out it might be more useful, but it would no doubt become many volumes.
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53 of 58 people found the following review helpful:
2.0 out of 5 stars A physicists handbook for mathematics -- not a textbook, June 17, 2000
By A Customer
The lecturer of our undergraduate Mathematical Methods for Physics course said that he recommends Arfken's book because it will be useful also later as a reference book. Hearing those words, I could not help but to think "this is one of *those* books". And indeed, although Arfken's and Weber's book covers quite a wide range of mathematics, it does so by being very concise, e.g. there is usually only one example per topic. This is one example of why it is not a good textbook. Not following Arfken's course, I will give another example: there are no answers and no solutions for any of the problems, making it very undesirable from the viewpoint of the person who cannot attend all the lectures. Finally, text itself is quite concise, and often it stops at telling the things rather than explaining them also. I guess I have to admit that I am not one of the excellent students mentioned by a reviewer, for I liked Kreyszig's Advanced Engineering Mathematics much more. As a contrast to Arfken's book, it offered many examples and helped to understand what the thing was all about. Unfortunately, it does not cover nearly all of the topics covered by Mathematical Methods for Physicists. If Mathematical Methods for Physicists is going to be your first introductory text to these topics and if you are not supported by very good lectures I can only say that may God have mercy on your soul.
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Inside This Book (learn more)
First Sentence:
In science and engineering we frequently encounter quantities that have magnitude and magnitude only, for example, mass, time, and temperature. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
explicit series form, linear oscillator equation, polynomial addition theorem, orthogonality interval, double factorial notation, confluent hypergeometric equation, recurrence relation equation, polygamma functions, indicial equation, orthogonality integral, integrated part vanishes, finite complex plane, circular current loop, triple scalar product, contour integral representation, least piecewise continuous, vector spherical harmonics, infinite semicircle, same recurrence relations, doubling formula, regular singularity, unprimed system, confluent hypergeometric functions, infinite product representations, exponential transform
Key Phrases - Capitalized Phrases (CAPs): (learn more)
New York, Additional Readings, Academic Press, Cambridge University Press, Oxford University Press, Englewood Cliffs, National Bureau of Standards, Repeat Exercise, Clarendon Press, Van Nostrand, Handbook of Mathematical Functions, Methods of Mathematical Physics, Methods of Theoretical Physics, Numerical Recipes, Princeton University Press, Elementary Approach, Evaluation of Definite Integrals, San Francisco, Shifted Chebyshev, Find the Green, San Diego, Tables of Functions, Use the Gram-Schmidt, Using Gauss
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