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Beginning with the world of numbers one is enchanted chapter by chapter into the labryinth. Some effort is required on the reader's part but that is rewarded in full measure. It is something to ponder the sheer beauty of ideas and proofs. Patterns and their "invention" surprisingly correspond to aspects of nature.
The presentation here is excellent. I found this book a great joy to read. While much that is presented here I have read before, the work still gives me further insight on things that I missed. This book is a gem.
What a way to start the journey to the world of Mathematics.You open the book and start reading it.True to the title he takes you to a guided tour into the world of Mathematics considering each pillar of Mathematics as a country on its own.
I have a read a four Volume series on the World of Mathematics by Newmann and I did wonder how beautifully the Mathematical areas with its own *Scenic beauty* has been described.But when I read this one,Yes ! I did get a feeling of having travelled to Mathematics World visited each place and had a good insight into each one.
Ivars Peterson starts the journey by first visiting the Number World.He names this as the "Prime pursuit" and then slowly into the *theory of mathematical spaces* -topology and minimal surfaces.Wait!I hear you asking if it is all about pure mathematics.Certainly not,then and there to make the passengers feel comfortable ,just like a real guide ,he introduces the usefulness of the concepts in the emperical world.Be it quantum computing-the century's scientific thirst or the age-old yet golden primes ,the journey is very smooth ,no harsh surprises what one would term as mathematics of the mathematicians.This one is for the layman..A cool and lucid entry and exit in the world of Mathematics.
After reading this book you will wonder,"have I visited so many *places* " but you will feel that you have learnt so many Mathematical stuffs,what this world is all about and mind you ,all these without even the slightest fatigue:)
A must read Popular Maths Book!
If you have read any popular works in mathematics over the last decade, then many of the topics in this book will be familiar. However, Peterson writes so well that even that which should be routine becomes interesting once again. There is also new material covering recent advances such as the "proof" of Fermat's Last Theorem, using quantum computers to solve combinatorially explosive problems and multi-dimensional string theory. Written at a level accessible to the interested lay person, this book is a smooth journey through the labyrinth of current mathematical progress. ....
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The book talks about an _architecture_ and a _process_ to achieve software reusability. I found the book hard to read. Sometimes I felt they did not "hit-the-ground". My problem? I was thinking in code. Don't let that happen to you.
The authors talk about a complete organized process to achieve reusability. The book is a must if you are thinking in reusability.
Read it!
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Chapter 10, Here There Be Dragons, will strike a chord with every experienced use case practitioner. As a consultant that develops and reviews use case models for customers, I found this chapter to be on the money. Bittner and Spence identify many improperly-used modeling techniques that often plague organizations during their initial adoption of use cases. Specifically, the sections regarding overuse of extend, include, and generalization relationships deserves much attention.
The Use Case syntax and semantics presented in Bittner and Spence's book is based on the foundational work developed by Ivar Jacobson. Straightforward and useful examples are presented for all of the use case artifacts discussed in the book. Unlike other use case texts that emphasize use case structure, form, and analytically oriented techniques, this book presents sufficient attention to notational elements and invests significantly more in describing pragmatic activities focused on synthesizing use cases that can be effectively leveraged across the lifecycle.
I have recommended Use Case Modeling to my clients as both an introductory as reference book for any project using use cases. The writing style lends itself to the entire spectrum of stakeholders involved in use case development from end users, architects, project managers, and developers.
If you are currently employing use cases, or are considering applying use cases on a project, this book is a MUST HAVE. It de-mystifies much of the confusion surrounding the practical application of use cases, and should be put on par with the early Object Oriented texts of Booch ,Rumbaugh, and Jacobson.
If there is one book that you should own on use cases, this is THE one.
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Other parts of the book talk about why building good software can be so hard, and about some of the people and organizations that work towards developing approaches to issues in software quality and construction. You wouldn't think that these would be particularly interesting subjects, but for the most part the author makes them come alive.
This is not a technical book--don't expect to come away from it with any new debugging techniques. Rather, expect it to give you lots of food for thought.
This book should be required reading for everybody in the IT industry!
Fatal Defect describes dozens of software failures, how they happened, and the efforts to correct them. The defects occur in banking systems, stock exchange mechanisms, aircraft and spacecraft guidance computers, medical equipment, telecommuncations, and scientific computation. Some of these failures are famous; others are little known. Regardless, the descriptions always provide the kind of technical detail that you need to really appreciate the situation. Petersen is a journalist for science news and is clearly a professional when it comes to describing technical issues for the intelligent layman.
Moreover, he tells the stories of people who found the errors, lead the efforts to correct them, or who tried to raise the standards of the industry. Nancy Leveson investigated the Therac-25 defect that lead to several deaths in 1986. This influenced her efforts to design software safety standards. Learning from failures requires knowing about them. But the details of many failures are often kept quiet, being marked proprietary or secret to avoid embarrassment or litigation. Peter Neumann tried to open up the discussion of computer failures with RISKS digest. He started it in 1985 but even today it remains one the best places to learn about the technical details behind dangerous system failures. David Parnas took the lead in criticizing the Star Wars strategic defense initiative. He noted that there would inevitably be defects in the software and that there was no way to conduct a comprehensive system test, short of a nuclear war. He then moved on to overseeing the engineering processes at the Darlington nuclear plant, ensuring that the software was correct, even though this delayed the project completion by three years. Vic Basili was one of the first to conduct controlled experiments with programming teams to determine which development methods actually produced the most reliable software. For example, in 1982, he established that code reviews were far more effective than functional testing, a result that is only beginning to be regularly applied to engineering practice today. These results lead he and Harlan Mills to develop the Cleanroom process which Mills taught at NASA and IBM.
Petersen tells the stories of these and other engineers, describing their background and how their careers lead them on the paths that they ended up. I'd been familiar with the ideas of many of these people, but i found it very interesting to learn of the experiences that had lead them to formulate and articulate these ideas.
The issue of what constitutes effective means for developing reliable software is becoming more than just a practical matter with recent events. Earlier this year the Texas board of professional engineers started licensing software engineers and the Institute for Electrical and Electronics Engineers plans to start certifying software engineers in 2000. Licensing means more than just professionalism and status. It also means acknowledging accepted practice and deviating from it at the risk of malpractice. If the licensing process is done well, it will base itself on the fine, but tentative work done by the people described in this book. If it is done poorly, it may merely enshrine the latest fad in law.