Linear Algebra Text: Suggestions and Recommendations

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Discussion Overview

The discussion revolves around recommendations for linear algebra textbooks suitable for self-study. Participants share their preferences and experiences with various texts, considering factors such as difficulty level, comprehensiveness, and suitability for beginners.

Discussion Character

  • Exploratory
  • Debate/contested
  • Technical explanation

Main Points Raised

  • Some participants recommend "Hoffman and Kunze" as an excellent but potentially challenging text for beginners.
  • Others suggest "Linear Algebra" by Friedberg, Insel, and Spence as a suitable option for self-study.
  • Axler's "Linear Algebra" is mentioned, with mixed reviews; some appreciate its approach, while others criticize its lack of solutions and its abstract nature.
  • Participants also mention "David Lay's" and "Gareth Williams'" books as more accessible introductions to linear algebra.
  • One participant offers free notes as a concise alternative, though they acknowledge the terseness of the material.
  • Concerns are raised about the applicability of Axler's text for those looking to learn practical applications of linear algebra.

Areas of Agreement / Disagreement

There is no consensus on a single recommended text, with multiple competing views on the suitability of various books for self-study. Participants express differing opinions on Axler's approach and its effectiveness for beginners.

Contextual Notes

Some participants note their limited experience with proofs and abstract problems, which may influence their recommendations. The discussion reflects a range of backgrounds and familiarity with mathematical concepts.

Who May Find This Useful

This discussion may be useful for individuals seeking guidance on linear algebra textbooks, particularly those interested in self-study or with varying levels of mathematical experience.

Yowhatsupt
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I'm planning on teaching myself linear algebra over the summer and was wondering what text to grab.

Thoughts, suggestions, recommendations etc are all appreciated.:redface: :smile:
 
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i like adams and shifrin, or my webnotes, or hoffman and kunze, or lang . if you have a library you might look for one of he published versiuons, if not and want a fre book, my notes are free but very terse. in 15 pages i cover what other books cover in 200-300 pages. still i do a good job.
 
shields is also a good book.
 
Hoffman and Kunze is excellent, rather old and not at all "watered down".

I had Kunze as my teacher in Linear Algebra.
 
I agree that Kunze-Hoffman is the best book on linear algebra by far, but it may be a little difficult for a first course.
 
How about Linear Algebra by Stephen H. Friedberg, Arnold J. Insel, and Lawrence E. Spence? Is this text suitable for self-studying?
 
wow halls, kunze is a friend of mine too. where were you his student?
 
Psi-String said:
How about Linear Algebra by Stephen H. Friedberg, Arnold J. Insel, and Lawrence E. Spence? Is this text suitable for self-studying?
I used it, and highly recommend it.
 
You could try Axler's Linear Algebra, which makes little use of determinants. I have heard good things about W.H. Greub's book. Finally, as already mentioned, there are many free books on the Internet. In particular, there is a very good set of notes by a Stanford Professor at http://math.stanford.edu/~vakil/113/katznelsonJan1.pdf
 
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  • #10
I disagree about Axler, especially if the desire is to learn applications or if it is being used as a first exposure. There are no solutions given anywhere, he will not provide solutions to students/self-studiers, and there are many theorems/propositions/lemmas etc that are left "as an exercise." I have been using this book for the last quarter, and honestly, I hate it. I think it is best if used in conjunction with a less abstract text, but that is just my opinion.

Also, regarding "making little use of determinants," it makes for very awkward sections on eigenvectors and eigenvalues. It is as if Axler had nothing better to do but write a book without determinants simply to be different.
 
  • #11
I agree Axler would be very tough the first time through, but that would also rule out Hoffman-Kunze.

For a basic introduction, there is a book by Gareth Williams that goes into applications and is at an understandable level.

For me, I like to use two different books. I read through a basic introduction such as David Lay's or Gareth Williams. Then, supplement that with Hoffman-Kunze or Axler "level" book.
 
  • #12
Forget Axler; Hoffman-Kunze or Friedberg are the way to go. (I personally lean towards Friedberg because of the amount of material covered in that book, as well as the plethora of exercises.)
 
  • #13
mathwonk said:
i like adams and shifrin, or my webnotes, or hoffman and kunze, or lang . if you have a library you might look for one of he published versiuons, if not and want a fre book, my notes are free but very terse. in 15 pages i cover what other books cover in 200-300 pages. still i do a good job.

I'll definitely be glancing through your notes...:)
 
  • #14
thanks for the suggestions people, I don't particularly have much experience with proofs or abstract problems. Most of my calculus knowledge is AP calculus, plug and chug. Do you guys still recommend the same texts? I love math, and I don't have a problem with buying supplemental study books with examples (I've done this since geometry as HS teachers do not teach enough)
 
  • #15
my notes on proofs of big theorems in the calculus thread address this.
 

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