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Topology of Fibre Bundles [Hardcover]

Norman Steenrod (Author)
5.0 out of 5 stars  See all reviews (3 customer reviews)


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Book Description

June 1951
Fibre bundles, an integral part of differential geometry, are also important to physics. This text, a succint introduction to fibre bundles, includes such topics as differentiable manifolds and covering spaces. It provides brief surveys of advanced topics, such as homotopy theory and cohomology theory, before using them to study further properties of fibre bundles.

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About the Author

Norman Steenrod was a professor of Mathematics at Princeton University and a member of the National Academy Of Sciences. He also edited Reviews in Topology.

Product Details

  • Hardcover: 229 pages
  • Publisher: Princeton Univ Pr; 1st edition (June 1951)
  • Language: English
  • ISBN-10: 0691080550
  • ISBN-13: 978-0691080550
  • Product Dimensions: 9.5 x 6.2 x 1 inches
  • Shipping Weight: 1.2 pounds
  • Average Customer Review: 5.0 out of 5 stars  See all reviews (3 customer reviews)
  • Amazon Best Sellers Rank: #1,879,662 in Books (See Top 100 in Books)

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10 of 10 people found the following review helpful:
5.0 out of 5 stars This is where it started, June 25, 2002
For those individuals who want an in-depth, insightful, and solid understanding of fiber bundles this book must be read. In spite of its date of publication, it still is of considerable value in this regard. Modern treatments of fiber bundles are very formal and the underlying motivation gets swept away in the thirst for rigor. Fiber bundles are now ubiquitous in differential topology, algebraic topology, differential geometry, and algebraic geometry, and have also found a place in theoretical physics, thanks to the success of gauge field theories. Therefore a mastery of fiber bundles is essential for entering any of these fields. But fiber bundles are fascinating objects in and of themselves, and studying them for their own sake needs no apology.

The author does use some antiquated notation, but that is not really a hindrance to the study of the book. The reader will no doubt have some background in differential geometry and topology before attempting this book, so the appropriate translation to more modern notation should be straightforward. Once started, and with a little thought adjustment to the idiosyncracies of the author's writing style, the reader will find a plethora of neat examples and insights into the subject. In particular, part 3 on the cohomology theory of bundles is exceptionally valuable in that it gives the reader a detailed overview of the origin of what are not called Stiefel-Whitney classes. The theory of characteristic classes has of course advanced and matured extensively since this book first appeared, but all of the modern treatments are lacking in that they do not give the reader an appreciation of the fundamentals of the subject. Indeed, the construction of the obstruction to the construction of a cross-section to a bundle is the starting point for many of the ideas in obstruction theory that one finds in differential topology. And yes, the procedures the author uses can be "cleaned-up" and made more concise, but the price one pays in such an endeavor is the loss of an appreciation of the concepts behind the scene.

Since the book is a monograph, there are no exercises, and this is probably the only minus to the book. Also, some knowledge of the German language would be useful to a reader who has it, since the author makes references to papers written in German and much of the terminology in the book shows its roots in the German language. One good example of this is the Reidemeister theory of cohomology groups based on a bundle of coefficients, called Uberdeckung by Reidemeister.

There is no question as to why this book remains in print, and it will no doubt continue to be well into the 21st century. IT is a good example of the idea that something new may not be something better. After finishing it, the reader will be amply prepared to enter into the continually-evolving theory of fiber bundles and their applications, all of which are interesting and important.

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8 of 8 people found the following review helpful:
5.0 out of 5 stars Excellent introduction to fiber bundles, February 24, 2002
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This book supplies a lot of intuition and background that more modern texts seem to assume of the reader. Steenrod's writing is meticulous and extremely clear. My opinion is that one can learn just as much out of this seemingly outdated text and probably even more than from the modern texts.

... True, more slick machinery has been developed since Steenrod's time, but those big machines are hardly transparent. Steenrod assumes very little of the reader; he even has a quick course in homotopy groups, although he assumes the reader knows the basics of homology/cohomology. Perhaps most importantly, since many of the ideas in the book were new at the time, he doesn't assume that the reader is already comfortable with those ideas. All together this makes a very accessible book indeed.

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8 of 11 people found the following review helpful:
5.0 out of 5 stars Still attractive., November 22, 1999
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O., S. Mr "eltonjohn" (Kawasaki, Kanagawa Japan) - See all my reviews
(REAL NAME)   
A nostalgic but still attractive book on (homotoy theory of) fiber bundles. This book is not very accessible as it predates the development of modern machinery of algebraic topology, but is worth reading.
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Inside This Book (learn more)
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First Sentence:
1.1. Provisional definition. A fibre bundle consists, at least, of the following: (i) a topological space B called the bundle space (or, simply, bundle), (ii) a topological space X called the base space, (iii) a continuous map p: B X of B onto X called the projection, and (iv) a space Y called the fibre. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
bundle structure theorem, same coordinate neighborhoods, same base space, tangent sphere bundle, minimal carrier, covering homotopy theorem, coordinate bundles, homotopy sequence, associated principal bundle, topological transformation group, primary obstruction, coefficient bundles, bundle mapping, relative bundles, totally disconnected group, admissible maps, twisted torus, product bundle, obstruction cocycle, principal map, homotopy groups, induced bundle, tensor bundles, des espaces fibrés, stepwise extension
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