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Polya's consideration of the Various Approaches to problem solving hangs on several key structural bands that take the forms of a teacher's questions: Do you know any related problem? Do you know an analogous problem? [Parallelograms are considered.] Here is a problem related to yours and solved before. Can you use it? Should you introduce some auxiliary element in order to make its use possible?
These ring true to this recently mustered parental pedantic.
Polya's actual treatise is just 30 pages; the associated 'dictionary' definitions section is quite extended, actually, making up some 200 pages. He describes going back to first principles in problem solving. January 1, 2003 is a day perhaps to remember such back tracking is sometimes in order.
How to Solve It is the most significant contribution to heuristic since Descartes' Discourse on Method. The title is accurate enough, but the subtitle is far too modest: the examples are drawn mostly from elementary math, but the method applies to nearly every problem one might encounter. (Microsoft, for instance, used to and may still give this book to all of its new programmers.) Polya divides the problem-solving process into four stages--Understanding the Problem, Devising a Plan, Carrying out the Plan, and Looking Back--and supplies for each stage a series of questions that the solver cycles through until the problem is solved. The questions--what is the unknown? what are the data? what is the condition? is the condition sufficient? redundant? contradictory? could you restate the problem? is there a related problem that has been solved before?--have become classics; as a computer programmer I ask them on the job every day.
The book is short, 250 large-print pages in the paperback. Its style is clear, brilliant and does not lack in humor. Here is Polya's description of the traditional mathematics professor: "He usually appears in public with a lost umbrella in each hand. He prefers to face the blackboard and turn his back on the class. He writes A; he says B; he means C; but it should be D." Behind the humor, though, lurks a serious complaint about mathematical pedagogy. Fifty years ago, when Polya was writing, and today still, mathematics was presented to the student, under the tyranny of Euclid, as a magnificent but frozen edifice, a series of inexorable deductions. Even the student who could follow the deductions was left with no idea how they were arrived at. How to Solve It was the first and best attempt to demystify math, by concentrating on the process, not the result. Polya himself taught mathematics at Stanford for many years, and one can only envy his students. But the next best thing is to read his book.
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However, the book is more than a guide to mathematical reasoning - you can look at it as a guide to problem solving orriented thinking. I work as a business consultant and I could resist constantly thinking about business decision-making in the context of the book. I strongly recommend it to anybody with interest in management decision-making.
Read this book. It's money more than well spent.
The range of the work is just as impressive. Many concepts now considered standard mathematical fare were products of his genius. When reading this biography, you are struck by the features of human nature that he projects. Who else would talk about the list of the three nicest mathematicians that they ever met? Would anyone else dare to also talk about the three most unpleasant mathematicians that they ever encountered? His honesty when admitting that he was intimidated by John von Neumann show a level of humility that few people of his stature would ever acknowledge.
In an era when being a lackluster to pathetic teacher is considered a prerequisite for a position as a research mathematician it is extremely refreshing to read about his qualities as a teacher and his concern for the profession. He was an existence proof of the reality that it is possible to be both. His contributions to the field of teaching are as strong as those in any other area of his expertise.
Biographies of mathematicians sometimes degenerate into lists of life accomplishments emphasizing the major formulas and proofs of their lives. In others, the person comes across as a solid professional, but there seems to be little else to their life. In writing about Polya, the author is describing a person that you would no doubt find to be pleasant company.
One of those amazing Hungarian mathematical exports that graced the United States with their presence, George Polya was truly a credit to the professions of being a mathematician and a human. This is one of the most enjoyable biographies of a mathematician that I have ever read.
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This book is suitable for mathematics graduate students.