Senin, 28 Oktober 2013

[G697.Ebook] Download PDF Collector's Guide to Tootsietoys: Identification and Values, by David Richter

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Collector's Guide to Tootsietoys: Identification and Values, by David Richter

Book by Richter, David

  • Sales Rank: #1184995 in Books
  • Brand: Brand: Collector Books
  • Published on: 1995-11
  • Original language: English
  • Number of items: 1
  • Dimensions: .77" h x 8.55" w x 10.99" l,
  • Binding: Paperback
  • 269 pages
Features
  • Used Book in Good Condition

Most helpful customer reviews

0 of 0 people found the following review helpful.
Great referance
By Steven Pierce
Very helpful in pricing and identifying Tootsie Toys. Lots of full color pictures. Does not cover every toy variant but no book ever could. I reference this book almost every day.

7 of 7 people found the following review helpful.
A Toootsietoy Collectors Must-Have Volume !!
By Irvin Goodman
This is a delightful book for Tootsietoy enthusiasts. It features 272 pages, filled with over 700 very large, sharp, full color photos. Values are provided, but when prices are consulted, readers should consider that this 2nd edition was published in 1996. There's a brief introduction and history. Major chapters include: aircraft and spaceships, autos and racers, buses, dozers, GM, Grahams, military, prepacks, ships, trailers, trains, trucks, 1970's, packaged toys and boxed sets, and more. The photos are a delight to view. Nice volume.

0 of 0 people found the following review helpful.
It's great !!
By Sergio Sevilla
Big beautiful and colorful pictures of hundreds of almost every model (there are some missing) with description and year of release. It's a most for the Totsietoys collector.

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Sabtu, 19 Oktober 2013

[T321.Ebook] Download PDF A Course in p-adic Analysis (Graduate Texts in Mathematics), by Alain M. Robert

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A Course in p-adic Analysis (Graduate Texts in Mathematics), by Alain M. Robert

A Course in p-adic Analysis (Graduate Texts in Mathematics), by Alain M. Robert



A Course in p-adic Analysis (Graduate Texts in Mathematics), by Alain M. Robert

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A Course in p-adic Analysis (Graduate Texts in Mathematics), by Alain M. Robert

Discovered at the turn of the 20th century, p-adic numbers are frequently used by mathematicians and physicists. This text is a self-contained presentation of basic p-adic analysis with a focus on analytic topics. It offers many features rarely treated in introductory p-adic texts such as topological models of p-adic spaces inside Euclidian space, a special case of Hazewinkel’s functional equation lemma, and a treatment of analytic elements.

  • Sales Rank: #1616168 in Books
  • Published on: 2000-05-31
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.21" h x 1.00" w x 6.14" l, 3.99 pounds
  • Binding: Hardcover
  • 438 pages
Features
  • ISBN13: 9780387986692
  • Condition: USED - Like New
  • Notes: 100% Satisfaction Guarantee. Tracking provided on most orders. Buy with Confidence! Millions of books sold!

Review

From the reviews:

MATHEMATICAL REVIEWS

"The text ends with a large number of exercises. The writing is extremely clear and very meticulous. The bibliography, which does not attempt to be comprehensive, is adequate. I recommend A. Robert’s book without reservation to anyone who wants to have a reference text on one-variable p-adic analysis that is clear, complete and pleasant to read."

MATHSCINET

"Robert's book is aimed at an intermediate level between the very specialized monographs and the elementary texts. It has no equal in the marketplace, because it covers practically all of p-adic analysis of one variable (except the rationality of the zeta function of an algebraic variety over a finite field and the theory of p-adic differential equations) and contains numerous results that were accessible only in articles or even in preprints. ...

I recommend A. Robert's book without reservation to anyone who wants to have a reference text on one-variable p-adic analysis that is clear, complete and pleasant to read."
D. Barsky in MathSciNet, August 2001

Most helpful customer reviews

1 of 1 people found the following review helpful.
The only good textbook exposition of the p-adic solenoid
By Jordan Bell
This is the most complete single place to learn about the p-adic numbers. Two other works that are similar are GouvĂȘa, p-adic Numbers: An Introduction (Universitext), and Schikhof, Ultrametric Calculus: An Introduction to p-Adic Analysis (Cambridge Studies in Advanced Mathematics), and I like Roberts the most of these three.

This book has what is probably the longest exposition in any book on the p-adic solenoid, as the appendix to Chapter 1. The group of p-adic integers is a compact abelian group that can be defined as an inverse limit of finite groups, and this way of thinking about the p-adic integers (rather than as formal power series or as a completion using the p-adic metric) make the p-adic solenoid a natural object to work with. The p-adic solenoid is a compact abelian group that is an inverse limit of compact abelian groups. Some of its properties are that the real numbers and the p-adic numbers are embedded naturally in it, and that it is the Pontryagin dual of the discrete group Z[1/p] of rational numbers whose denominator is some power of the prime p. Anyone who is interested in harmonic analysis on locally compact abelian groups should read this appendix on the p-adic solenoid.

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Rabu, 16 Oktober 2013

[E863.Ebook] Download Ebook Monsters Among Us, by T. M. Simmons

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Monsters Among Us, by T. M. Simmons

Monsters Among Us, a novella, is T. M. Simmons annual Halloween story.
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Come join T. M. Simmons as she takes you deep into the mountains where not only do monsters roam, but good has battled evil through the centuries.

  • Sales Rank: #1536198 in eBooks
  • Published on: 2013-09-29
  • Released on: 2013-09-29
  • Format: Kindle eBook

Most helpful customer reviews

1 of 1 people found the following review helpful.
Monster story
By Jen
I really enjoyed this read, actually loved reading it in October for Halloween. I like to find books that fit the season and this one does. I am sure I would have liked reading this anytime because as always this author makes the book grab your interest from beginning to end.

1 of 1 people found the following review helpful.
Monster Story
By englishtydog
I love this story!! Good, evil, love, hate, monsters, and beauty....it has it all! T.M. Simmons never disappoints with her Halloween stories!

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Rabu, 02 Oktober 2013

[Z128.Ebook] Free PDF Euclidean Geometry: A Guided Inquiry Approach (MSRI Mathematical Circles Library), by David M. Clark

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Euclidean Geometry: A Guided Inquiry Approach (MSRI Mathematical Circles Library), by David M. Clark

Geometry has been an essential element in the study of mathematics since antiquity. Traditionally, we have also learned formal reasoning by studying Euclidean geometry. In this book, David Clark develops a modern axiomatic approach to this ancient subject, both in content and presentation. Mathematically, Clark has chosen a new set of axioms that draw on a modern understanding of set theory and logic, the real number continuum and measure theory, none of which were available in Euclid's time. The result is a development of the standard content of Euclidean geometry with the mathematical precision of Hilbert's foundations of geometry. In particular, the book covers all the topics listed in the Common Core State Standards for high school synthetic geometry. The presentation uses a guided inquiry, active learning pedagogy. Students benefit from the axiomatic development because they themselves solve the problems and prove the theorems with the instructor serving as a guide and mentor. Students are thereby empowered with the knowledge that they can solve problems on their own without reference to authority. This book, written for an undergraduate axiomatic geometry course, is particularly well suited for future secondary school teachers. In the interest of fostering a greater awareness and appreciation of mathematics and its connections to other disciplines and everyday life, MSRI and the AMS are publishing books in the Mathematical Circles Library series as a service to young people, their parents and teachers, and the mathematics profession.

  • Sales Rank: #795267 in Books
  • Published on: 2012-08-12
  • Original language: English
  • Dimensions: 9.75" h x 7.00" w x .50" l, .64 pounds
  • Binding: Paperback
  • 127 pages

Review
An interesting and singular approach of the Euclidean geometry is contained in this book . . . [The] book covers all the topics listed in the common core state standards for high school synthetic geometry . . . [T]he didactical approach of the large collection of problems, solutions and geometrical constructions is very important to consider it as a good textbook for teaching and learning synthetic geometry. --Mauro Garcia Pupo, Zentralblatt MATH

About the Author
David M. Clark is at State University of New York, NY, USA.

Most helpful customer reviews

3 of 3 people found the following review helpful.
It does not fit the Mathematical Circles Library
By ScienceThinker
This is the third book for which I use the same title in my review. The other two are: Geometry: A Guide for Teachers (MSRI Mathematical Circles Library) and Integers, Fractions and Arithmetic: A Guide for Teachers (MSRI Mathematical Circles Library). As I wrote in one of these reviews, AMS and MSRI could have started another series (say Teacher's Mathematical Training Library or Inquiry-Based Learning Library) and place the three books there. None of these books is directly related to mathematical competitions except from the fact that they are written on topics included in the curriculum of all mathematical competitions. But then, there are thousands of books which fulfill this criterion.

Overall, I like this book better than Geometry: A Guide for Teachers (MSRI Mathematical Circles Library). I am less negative and, if it was not for its wrong placement in the wrong series, I would probably had given it a higher rating despite some problems as I explain below.

Assuming some primary notions and some definitions (which are not always stated) and using 10 axioms motivated by measure theory, the author `derives' many of the results of Euclidean geometry without the `painful' methods of synthetic geometry. (For those not familiar with Euclidean geometry, these axioms are neither Euclid's nor Hilbert's improved axioms.) The approach is interesting and worth knowing but, for those of us who have studied synthetic geometry, it eliminates a lot of the appeal and `magic' of synthetic geometry. It also minimizes the extend of how much someone can be trained in proofs and reduces the opportunity to help someone build deductive reasoning, two of the most important benefits of synthetic geometry. Fortunately, these benefits are not completely absent since the approach is still kind of synthetic. However, the author provides no proofs to the theorems and propositions, expecting the reader to discover all of them by himself/herself. This is a little extreme for a reader who has never seen geometry and, hence, he/she must study the book under the supervision of an experienced person. In this regard, I will be a little harsh to the author: `Inquiry-based' does not mean `Discover everything on your own.' If that was the case, no math book would have any proof claiming to be helping the reader to discover mathematics by inquiry. Inquiry-based learning means discovery through experimentation and try-and-error activities; kind the same way geometry was discovered by the Babylonians and Egyptians in the first place and eventually was formulated by the Greeks as a logical framework. No such activities are given. Therefore, I would argue that this book is not an inquiry-based book but just learn-on-your-own-if-you-can one.

The author has included three appendices. The first collects the axioms used in the book which are otherwise scattered in the various chapters. The third appendix summarizes Hilbert's axioms. Amazingly, the author separates these two appendices with an appendix entitled "Guidelines for the instructor". This fact makes one wonder how much the author cared about the logical order of the topics!

In any case, my conclusion is that although this is not the book to use to get training for mathematical competitions and although some improvements can be made in a second edition, it can prove useful to students who do not want to spend numerous hours to study synthetic Euclidean geometry using Hilbert's axioms. Or it can just be used as a quick reference book that contains a list of the most important theorems and propositions.

10 of 13 people found the following review helpful.
An intellectually dishonest book
By Michael Weiss
This is a truly terrible book. Things start off badly in the preface, when Clark claims that Euclid "asked his readers to experimentally verify [the axioms] as thoroughly as they were able". Euclid says no such thing. Anyone who knows beans about ancient Greek mathematics and philosophy will appreciate the sheer historical wrongness of this assertion. (Hint: Platonism.) Statements about the curvature of space are equally incorrect.

But the central problem with this book is its shoddy treatment of the axiomatic method. In some ways, Euclidean geometry is hard soil for the axiomatic approach: Euclid falls well short of modern standards of rigor, mainly because of the lack of so-called betweenness axioms. Hilbert of course (and others) showed how to remedy this early in the 20th century.

There are two intellectually honest ways to deal with this. You can bite the bullet, include the axioms, and go through the tedious steps of verifying things that seem intuitively clear (or insist that your students do the same). You tell your students, hey, I know it gets boring, but that's just how it goes sometimes. That's the price of rigor.

Or you don't claim total rigor. You tell your audience that it's just too painful to prove all the visually obvious statements about betweenness. You will (or they should) just assume them. Of course there are pitfalls with this approach, but it can work.

I should also mention hybrid approaches. You could do one or two proofs with full rigor, but then adopt more relaxed standards. You could illustrate full rigor with a toy axiom system, say just the basic incidence axioms. Whatever you do, though, you should not pretend you're being rigorous when you're not.

The author's approach: he introduces the "foundational principle" that properties of betweenness that "hold for all points and lines in the coordinate plane hold here as well."

Problem is, how does one know that something holds in the coordinate plane? Actually PROVING this almost always involves messy algebra, as bad as the tedious steps one faces with the rigorous axiomatic approach.

Clark doesn't expect the student to give any such algebraic verifications, nor does he do so himself in his sample proofs. He gives not even a hint of what the algebraic verifications would look like. The words "foundational principle" are employed like magic fairy dust: instead of saying, "this is visually obvious, so we'll assume it", the student is supposed to say, "this holds in the coordinate plane, so it holds by the foundational principle". The book seems to claim this amounts to a huge improvement, far more faithful to the spirit of the axiomatic method.

For a gentler review that makes many of the same points, plus some others, see the MAA:
[...]

2 of 9 people found the following review helpful.
Euclidean Geometry
By Azadeh
Very interesting book, I learned so much from it , I suggest it to people who likes to learn geometry

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