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The Mathematics of Infinity 2e - A Guide to Great Ideas (Hardcover, 2nd Edition)
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The Mathematics of Infinity 2e - A Guide to Great Ideas (Hardcover, 2nd Edition)
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Writing with clear knowledge and affection for the subject, the
author introduces and explores infinite sets, infinite cardinals,
and ordinals, thus challenging the readers' intuitive beliefs about
infinity. Requiring little mathematical training and a healthy
curiosity, the book presents a user-friendly approach to ideas
involving the infinite. Readers will discover the main ideas of
infinite cardinals and ordinal numbers without experiencing
in-depth mathematical rigor. Classic arguments and illustrative
examples are provided throughout the book and are accompanied by a
gradual progression of sophisticated notions designed to stun your
intuitive view of the world. Infinity, we are told, is as large as
things get. This is not entirely true. This book does not refer to
"infinities, " but rather to "cardinals." This is to emphasize the
point that what you thought you knew about infinity is probably
incorrect or imprecise. Since the reader is assumed to be educated
in mathematics, but not necessarily mathematically trained, an
attempt has been made to convince the reader of the truth of a
matter without resorting to the type of rigor found in professional
journals. Therefore, the author has accompanied the proofs with
illustrative examples. The examples are often a part of a larger
proof. Important facts are included and their proofs have been
excluded if the author has determined that the proof is beyond the
scope of the discussion. For example, it is assumed and not proven
within the book that a collection of cardinals is larger than any
set or mathematical object. The topics covered within the book
cannot be found within any other one book on infinity, and the work
succeeds in being the only book on infinite cardinals for the high
school educated person. Topical coverage includes: logic and sets;
functions; counting infinite sets; infinite cardinals; well ordered
sets; inductions and numbers; prime numbers; and logic and
meta-mathematics.
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