Introduction To The Theory Of Neural Computation (Santa Fe Institute Series)

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Introduction To The Theory Of Neural Computation (Santa Fe Institute Series)

Introduction To The Theory Of Neural Computation (Santa Fe Institute Series)


Introduction To The Theory Of Neural Computation (Santa Fe Institute Series)


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Introduction To The Theory Of Neural Computation (Santa Fe Institute Series)

Comprehensive introduction to the neural network models currently under intensive study for computational applications. It also provides coverage of neural network applications in a variety of problems of both theoretical and practical interest.

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Product details

Series: Santa Fe Institute Series (Book 1)

Paperback: 350 pages

Publisher: Westview Press; 1 edition (June 26, 1991)

Language: English

ISBN-10: 0201515601

ISBN-13: 978-0201515602

Product Dimensions:

6 x 0.8 x 9 inches

Shipping Weight: 1 pounds (View shipping rates and policies)

Average Customer Review:

4.0 out of 5 stars

5 customer reviews

Amazon Best Sellers Rank:

#294,244 in Books (See Top 100 in Books)

To really enjoy this book, one has to co-read a book in Statistical (Quantum) Mechanics, which in itself could be very involved. However, if you follow "Statistical Mechanics: A Survival Guide" by A. M. Glazer it will be an enjoyable read. The idea is to see how theoretical physics has informed the information processing in neural networks.

I think I even saw a cover picture with the name John A Hertz in the cover, not just John Hertz, but I have the vague memory I saw the pun of being Hertz and having a middle H initial AND another h in the name. I purchased my copy in another country just as it was published, but the copy was stolen in NYC (sic). I remember I did have to correct a minus sign typo in one of the equations, but now I a unsure as to the name of the author or the number of editions. I will review it thoroughly hoping there are no LOST SECTIONS. This mathematical treatment is really necessary and the bibliography looks very valuable.

The book needs a improvment in the ideas structure. The contents is ok, but it is really necessary reorganize it

It's not the latest book on this topic, so today, there are other texts that have more recent developments to be sure. I originally read this text about 15 years ago. But what I got from this book, that I didn't get from most, are important insights and clear understanding of the material that's covered. The authors have a deep understanding, and have teaching as their goal in writing. Most other texts in this area are lacking in one or both of those characteristics, and aren't worth the paper they are printed on.

This book is written from a mathematical perspective. The book introduces the Hopfield Neural Network with history and applications. The authors solve the network problem and develop the Hebb Rule. Links are made to Ising Spin models and stochastic problems. I find this book to be one of the best written mathematical guides for Neural Networks.

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