Jumat, 26 Desember 2014

[D687.Ebook] Download Java Programming, 7th Edition, by Joyce Farrell

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Java Programming, 7th Edition, by Joyce Farrell

Give your beginning programmers a thorough, engaging and hands-on introduction to developing applications with Farrell's JAVA PROGRAMMING, 7E. This complete guide provides the details and real-world exercises today's readers need to master Java, one of the most widely used tool among professional programmers for building visually interesting GUI and Web-based applications. With JAVA PROGRAMMING, 7E even first-time programmers can quickly develop useful programs while learning the basic principles of structured and object-oriented programming. The text explains concepts clearly and reinforces the reader-friendly presentation with meaningful real-world exercises. Full programming examples emphasize learning in context. Updated "You Do It" sections, all-new programming exercises, and new continuing cases help students build skills critical for ongoing programming success.

  • Sales Rank: #167764 in Books
  • Brand: Brand: Cengage Learning
  • Published on: 2013-01-31
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.25" h x 8.00" w x 1.75" l, 3.50 pounds
  • Binding: Paperback
  • 1084 pages
Features
  • Used Book in Good Condition

Review
1. Creating Your First Java Classes. 2. Using Data. 3. Using Methods, Classes and Objects. 4. More Object Concepts. 5. Making Decisions. 6. Looping. 7. Characters, Strings and the StringBuilder. 8. Introduction to Arrays. 9. Advanced Array Concepts. 10. Introduction to Inheritance. 11. Advanced Inheritance Concepts. 12. Exception Handling. 13. File Input and Output. 14. Introduction to Swing Components. 15. Advanced GUI Topics. 16. Graphics. 17. Applets, Images, and Sound. Appendix A: Working with the Java Platform. Appendix B: Learning about ASCII and Unicode. Appendix C: Formatting Output. Appendix D: Generating Random Numbers. Appendix E: Javadoc.

About the Author
Joyce Farrell has authored several popular programming textbooks, including books on Java, Programming Logic and Design, C#, and C++. Her books are recognized for their clear, direct writing style and effective presentation. A well-respected instructor, Ms. Farrell has taught Computer Information Systems at Harper College in Palatine, Illinois, the University of Wisconsin-Stevens Point, and McHenry County College in Crystal Lake, Illinois.

Most helpful customer reviews

7 of 7 people found the following review helpful.
Not Very Good Structure
By dachshund8
I am not an expert at Java, but I have a fair amount of experience using Visual Basic and PHP (and some C). I have worked with Java before, having learned the basics from Sam's Teach Yourself Java 6 in 21 days.

I had to use this book for a Java class at school. I am only in chapter 4, but I am not impressed with the layout of ideas in this book. As an example, method overloading is discussed before loops.

The preface for this book claims that this book is for people with "little to no programming experience." However, unless you must use this book, I would recommend a beginner to look elsewhere.

6 of 7 people found the following review helpful.
Like reading controlled chaos in a foreign language.
By A. O. Kay
This book is extremely difficult to read as the information is presented in reverse-thought paragraphing, with the topic sentence usually buried inside the paragraph, the example sentence is often first, but never makes its point, and the final sentence sometimes supports the second sentence or references something in a future chapter. Whaaat?

I have very little programming experience with only minor HTML & CSS writing. The Preface specifically states, "This textbook assumes that you have little or no programming experience...The explanations in this textbook are written clearly in straightforward sentences..." Yay! Wait... Huh? Um, no. I heartily disagree.

By chapter 2, I felt overwhelmed with programmer mental processing. I am married to a programmer and know what this feels like. To a non-programmer, it is like being an amateur hiker and trying to climb straight up a mountain no matter the terrain or mega-sized rocks, rather than using the switchback path.

This book needs a serious overhaul with a non-techie English major to help remove the floundering illogical and non-comprehensible writing structure. It is written with too much of a programmer's hand, and not enough of a "How'd ya do that?" view. The further I read, the more this became status-quo.

This book is 1000 pages because it is often wordy without any supporting or concluding examples and statements. Although many of the Figures/examples seem accurate, they usually require the reader to turn the page in order to view them, flipping back and forth to re-read the slacking explanation.

It is difficult to move forward from a chapter because the exercises do not always match with the current knowledge base. I have had to spend a lot of time online finding clarification on concepts as the book does not provide assistance. (I am an 'A' student and rarely need outside assistance to "get" the instruction or text.) The author makes too many leaps and assumes too much reader understanding. Even my spouse agreed there were some big steps without structure.

Further, and most frustrating as a student, is the book's lack of instruction. There are no formal or informal step-by-step instructions, no base explanations of concepts, no ease of understanding the vocabulary, too many references to what the student "will be learning in future chapters," and each current example lacks presentation consistency as though written by different authors.

In conclusion, if reading a tech-manual written in a foreign (programming?) language is your thing, then this book is the ticket. However, if you are wanting to learn Java, but do not want to pull your hair out and cry in front of your spouse, this is NOT the book for you.

3 of 3 people found the following review helpful.
Terrible for a basic Java class.
By Khey Largo
I have a basic understanding of programming. I HAVE to use this book for a class. The questions in our class have NOTHING to do with this book. I understand the English language very well, what this book lacks is a cohesive writing style. It lacks explanations of ideas and overall, wouldn't recommend it to anyone.

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Senin, 15 Desember 2014

[X567.Ebook] Free PDF Tonal Harmony, by Stefan Kostka, Dorothy Payne, Byron Almen

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Tonal Harmony, by Stefan Kostka, Dorothy Payne, Byron Almen

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Tonal Harmony, by Stefan Kostka, Dorothy Payne, Byron Almen

For over two decades Tonal Harmony has been the leading text for the two-year theory curriculum for music majors. Used at nearly 800 schools, Tonal Harmony has been consistently praised for its practicality and ease of use for student and instructor alike. The straightforward approach is supported by well-chosen examples and thoughtful exercises, and the total presentation is compatible with differing teaching styles and theoretical points of view. In addition, students can purchase a CD of recorded examples for use with the textbook, while audio examples for the workbook are available for download as MP3 files. For instructors, an extensive Instructor's Manual is available and rounds out this comprehensive teaching package.

  • Sales Rank: #11434 in Books
  • Published on: 2012-06-22
  • Original language: English
  • Number of items: 1
  • Dimensions: 10.30" h x 1.20" w x 8.20" l, 3.17 pounds
  • Binding: Hardcover
  • 688 pages

About the Author
STEFAN KOSTKA

Holds degrees in music from the University of Colorado and the University of Texas and received his Ph.D. in music theory from the University of Wisconsin. He was a member of the faculty of the Eastman School of Music from 1969 to 1973. Since that time he has been on the faculty of the University of Texas at Austin. Dr. Kostka initiated courses in computer applications in music at both the Eastman School and the University of Texas. More recently he specialized in courses in atonal theory and contemporary styles and techniques, interests that led to a second book, Materials and Techniques of Post-Tonal Music. Dr. Kostka is active in various professional organizations and is a past president of the Texas Society for Music Theory.

�DOROTHY PAYNE

Held both bachelor’s and master’s degrees in piano performance and a Ph.D. in music theory, all from the Eastman School of Music. She was on the faculty of the University of South Carolina from 1994 until 1998. Former administrative positions include those of Dean at South Carolina, Director of the School of Music at the University of Arizona, and Music Department Head at the University of Connecticut. Prior faculty appointments were held at the University of Texas at Austin, the Eastman School of Music, and Pacific Lutheran University. Dorothy presented lectures and workshops on theory pedagogy at meetings of professional societies and served the National Association of Schools of Music as a visiting evaluator, member of the Accreditation Commission, and Secretary of the Executive Committee. Dorothy Payne passed away in 2010.

BYRON ALM�N

Holds a bachelor’s degree in music and physics from St. Olaf College, a master’s degree in piano performance from Indiana University, and a Ph.D. in music theory from Indiana University. He has been a member of the faculty of the University of Texas at Austin since 1998. He is the author of A Theory of Musical Narrative and the coauthor, with Edward Pearsall, of Approaches to Meaning in Music, both published by Indiana University Press, along with numerous articles and book chapters. He is the winner of several teaching awards, including the prestigious University of Texas System Regents' Outstanding Teaching Award. In addition to his continued performing activities as a pianist and organist, he is active in professional organizations in music, semiotics, and psychology. Dr. Alm�n teaches courses in the undergraduate harmony sequence, as well as courses in music theory pedagogy, the history of music theory, and score reading.

Dorothy Payne currently runs ArtInternationale Gallery in San Francisco, where she curates literary/music events in the series "Communities Without Borders." She is an active member of the Revolutionary Poets Brigade, working closely with the pre-eminent "Poet for the People" Jack Hirschman, to whom she says she is "indebted beyond measure." She has published cultural critiques and poetry in anthologies and journals and performed in various poetry/music ensembles nationally and internationally.

Most helpful customer reviews

0 of 1 people found the following review helpful.
Same text book, cheaper price
By theDyker
My son needed this book for an AP (advanced placement) high school class. I can't speak to the quality of the material, but I can say it was a lot cheaper to order from Amazon than it was to buy from the school. By like $75 cheaper!

15 of 15 people found the following review helpful.
Great, but sometimes confusing...
By Lucas Bruno
I had to use this textbook for my last 2 years of Music Theory class (Theory III and Theory IV). It's definitely a good text as it covers everything I needed to know and had great examples. But it could often be confusing! It seems as if it was written from the perspective of "I'm an expert on Music Theory, look what I know!" instead of a "I'm brand new to all this, please explain it as simply and concisely as possible." perspective. It will definitely teach you what you need to know, but it doesn't have the most clear, easy-to-understand explanations. Thankfully my teacher was great at simplifying the subject enough for our class to grasp the concepts.

So overall, if you have to use this book, you won't be disappointed in what it offers, but if you need the theory presented explained in the simplest, most easy-to-understand way possible, then there are definitely other books and websites that'll help you a lot more.

7 of 7 people found the following review helpful.
Useless if you use screen readers.
By CS
This book is roughly 40 times the cost any ebook should be, and it's covered with DRM. I'm legally blind, and this DRM means I can't use my normal screen readers on it and can't convert it to a PDF or other format that's easier for me to use. The publisher is more concerned with protecting its rights than providing a quality experience.

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Jumat, 05 Desember 2014

[J852.Ebook] Ebook Free Listening Myths: Applying Second Language Research to Classroom Teaching, by Steven Brown

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Listening Myths: Applying Second Language Research to Classroom Teaching, by Steven Brown



This volume was conceived as a "best practices" resource for teachers of ESL listening courses in the way that Vocabulary Myths by Keith S. Folse (and Writing Myths by Joy Reid) is one for reading and vocabulary teachers. It was written to help ensure that teachers of listening are not perpetuating the myths of teaching listening.


Both the research and pedagogy in this book are based on the newest research in the field of second language acquisition. Steven Brown is the author of the Active Listening textbook series and is a teacher trainer.


The myths debunked in this book are:


�� Listening is the same as reading.


�� Listening is passive.


�� Listening equals comprehension.


�� Because L1 language ability is effortlessly acquired, L2 listening ability is too.


�� Listening means listening to conversations.


�� Listening is an individual, inside-the-head process.


�� Students should only listen to authentic materials.


�� Listening can’t be taught.



  • Sales Rank: #553378 in eBooks
  • Published on: 2013-04-24
  • Released on: 2013-04-24
  • Format: Kindle eBook

Review
Steven Brown's *Listening Myths* has won the College English Association of Ohio's 2014�Nancy Dasher Award. The qualifications for the award are:



��������� The book must be scholarly.

��������� The book must include high-quality research work.

��������� The book must provide an original contribution to the field.

��������� The author must live and work in Ohio.

��������� The book must be peer-reviewed.

��������� The book must be published by a reputable university press.



Steve Brown, Professor of English at Youngstown State University, is also the co-author of Second Language Acquisitions Myths (same series) and the recently published Third Edition of Understanding Language Structure, Interaction, and Variation. (College English Association of Ohio 2014-03-20)

About the Author
Steven Brown is Fellow at the Institute for Biomusicology at Mid Sweden University, Ostersund.

Most helpful customer reviews

7 of 7 people found the following review helpful.
A gem of a book!
By Michael Rost
Steve Brown has been a major contributor to the field of second language listening, through his presentations and classes, through his cutting-edge classroom materials, such as English Firsthand, and through his down-to-earth teacher training work, such as Listening Myths. Listening Myths is a very accessible, very personable, very entertaining work. It will be especially valuable for new teachers who need quick guidance on teaching approaches, but also appreciated by teacher trainers and researchers who want more background and insight into the key issues the book investigates.

Listening Myths is organized around eight popular "myths" - commonsensical and widely held beliefs that are at best faulty oversimplifications and at worst downright dangerous views when put into practice. The 8 myths (Listening is the same as reading. Listening is passive. Listening equals comprehension. Because L1 listening ability is required effortlessly, L2 listening ability is too. Listening means listening to conversations. Listening is an individual, inside-the-head process. Students should listen only to authentic materials. Listening can't be taught) are examined and deconstructed carefully. Brown shows that while each myth may contain a grain of truth, buying into the myths will lead to lazy thinking, and also to poor teaching and ineffective learning.

The book is brilliantly organized, weaving between the themes of research and application. Each chapter provides a section on "What the research says", including a summary table of relevant studies that have helped to debunk the particular myth. Each chapter concludes with a practical "What we can do" section that provides detailed clear guidelines that teachers can employ immediately to counter the myth in actual teaching situations.

Overall, I found Listening Myths to be refreshing, thorough, and up-to-date. Steve Brown has made a wonderful contribution to both research and teaching in this gem of a book!

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Senin, 01 Desember 2014

[W519.Ebook] PDF Download Geometry, by David A. Brannan, Matthew F. Esplen, Jeremy J. Gray

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Geometry, by David A. Brannan, Matthew F. Esplen, Jeremy J. Gray

This richly illustrated and clearly written undergraduate textbook captures the excitement and beauty of geometry. The approach is that of Klein in his Erlangen programme: a geometry is a space together with a set of transformations of the space. The authors explore various geometries: affine, projective, inversive, hyperbolic and elliptic. In each case they carefully explain the key results and discuss the relationships between the geometries. New features in this second edition include concise end-of-chapter summaries to aid student revision, a list of further reading and a list of special symbols. The authors have also revised many of the end-of-chapter exercises to make them more challenging and to include some interesting new results. Full solutions to the 200 problems are included in the text, while complete solutions to all of the end-of-chapter exercises are available in a new Instructors' Manual, which can be downloaded from www.cambridge.org/9781107647831.

  • Sales Rank: #305582 in eBooks
  • Published on: 2011-12-22
  • Released on: 2013-12-13
  • Format: Kindle eBook

Review
"...an excellent and precisely written textbook that should be studied in depth by all would-be mathematicians." Mathematical Reviews

"There are many things to like about this book. It conveys the beauty and excitement of the subject, avoiding the dryness of many geometry texts. I was very pleased to see the classification of conics developed in Chapters 1 through 4...The effort put in on the problems and answers is very impressive...The language is clear, with little to fear from Anglicisms...presentation is clean and pleasing to the eye...it raised in me a desire to teach elementary geometry again, something I have not felt or done in years." MAA Online

About the Author
David A. Brannan is Emeritus Professor in the Department of Mathematics and Computing at The Open University, Milton Keynes.

Matthew F. Esplen is a Lecturer in the Department of Mathematics and Statistics at The Open University, Milton Keynes.

Jeremy J. Gray is a Professor of the History of Mathematics at The Open University, Milton Keynes and Honorary Professor at the University of Warwick.

Most helpful customer reviews

55 of 56 people found the following review helpful.
Good and enjoyable for a wide range of readers
By William A. Huber
A quarter century ago I noticed that some of the graduate physics students in my university were carrying around copies of Scientific American. Armed with that clue, I dug out every article on the newly discovered fundamental particles. Within the space of a week of fairly easy reading I was able to acquire a good sense of what this subject was all about. These articles explained the basic stuff our professors assumed we must know (but most of us surely didn't).
Brannan, Esplen, and Gray's Geometry accomplish for math what those Scientific American articles did for physics: speaking at a level accessible to anyone with a good high school education, they bring the interested reader up to speed in affine, projective, hyperbolic, inversive, and spherical geometry. They provide the simple explanations, diagrams, and computational details you are assumed to know-but probably don't-when you take advanced courses in topology, differential geometry, algebraic geometry, Lie groups, and more. I wish I had had a book like this when I learned those subjects.
Individual chapters of about 50 pages focus on distinct geometries. Each one is written to be studied in the course of five evenings: a week or two of work apiece. Although they build sequentially, just about any of them can be read after mastering the basic ideas of projective geometry (chapter 3) and inversive geometry (chapter 5). This makes the latter part of the book relatively accessible even to the less-committed reader and an effective handbook for someone looking for just an overview and basic formulas.
The approach is surprisingly sophisticated. The authors do not shy away from introducing and using a little bit of group theory, even at the outset. (Scientific American, even in its heyday, never dared do that.) They present all geometries from a relatively modern point of view, as the study of the invariants of a transitive group of transformations on a set. Many explanations and proofs are based on exploiting properties of these transformations. This brings a welcome current of rigor and elegance to a somewhat static subject long relegated to out of date or sloppy authors (with the exception of a few standouts, such as Lang & Murrow's "Geometry").
One nice aspect is the authors' evident awareness of and appreciation for the history of mathematics. Marginal notes begin at Plato and wind up with Felix Klein's Erlangen program some 2300 years later. Although the text does not necessarily follow the historical development of geometry, its references to that development provide a nice context for the ideas. This is an approach that would improve the exposition of many math texts at all levels.
The authors are British and evidently write for students with slightly different backgrounds than American undergraduates. Obvious prerequisites are a mastery of algebra and a good high school course in Euclidean geometry. Synopses of the limited amounts of group theory and linear algebra needed appear in two brief appendices. However, readers had better be intuitively comfortable with matrix operations, including diagonalization and finding eigenspaces, because matrices and complex numbers are used throughout the book for performing computations and developing proofs. A knowledge of calculus is not needed. Indeed, calculus is not used in the first two-thirds of the book, appearing only briefly to derive a distance formula for hyperbolic geometry (a differential equation for the exponential map is derived and solved). During the last third of the book (the chapters on hyperbolic and spherical geometry), some basic familiarity with trigonometric functions and hyperbolic functions is assumed (cosh, sinh, tanh, and their inverses). Definitions of these functions are not routinely provided, but algebraic identities appear in marginal notes where they are needed.
Now for the quibbles. The book has lots of diagrams, but not enough of them. The problems are usually trivial, tending to ask for basic calculations to reinforce points in the text. The text itself does not go very deeply into any one geometry, being generally content with a few illustrative theorems. An opportunity exists here to create a set of gradually more challenging problems that would engage smarter or more sophisticated readers, as well as show the casual reader where the theories are headed.
This book is the work of three authors and it shows, to ill effect, in Chapter 6 ("non-euclidean geometry"). Until then, the text is remarkably clean and free of typographical and notational errors. This chapter contains some glaring errors. For example, a function s(z) is defined at the beginning of a proof on page 296, but the proof confusingly proceeds to refer to "s(0,c)", "s(a,b)", and so on.
The written-by-committee syndrome appears in subtler ways. There are few direct cross-references among the chapters on inversive, hyperbolic, and spherical geometry, despite the ample opportunities presented by the material. Techniques used in one chapter that would apply without change to similar situations in another are abandoned and replaced with entirely different techniques. Within the aberrant Chapter 6, some complex derivations could be replaced by much simpler proofs based on material earlier in the chapter.
The last chapter attempts to unify the preceding ones by exhibiting various geometries as sub-geometries of others. It would have been better to make the connections evident as the material was being developed. It is disappointing, too, that nothing in this book really hints at the truly interesting developments in geometry: differentiable manifolds, Lie groups, Cartan connections, complex variable theory, quaternion actions, and much more. Indeed, any possible hint seems willfully suppressed: the matrix groups in evidence, such as SL(2, R), SU(1,1, C), PSL(3, R), O(3), and so on, are always given unconventional names, for instance. Even where a connection is screaming out, it is not made: the function abstractly named "g" on pages 296-97 is the exponential map of differential geometry, for instance.
Despite these limitations, Brannan et al. is a good and enjoyable book for anyone from high school through first-year graduate level in mathematics.

22 of 23 people found the following review helpful.
A lovely Introduction to all kinds of Plane Geometries
By J. J. K. Swart
This book gives a beautiful overview of geometry of 2 dimensions. All of the book is about many plane geometries I have heard of, but didn't really know. This book changed that.
The first chapter treats some basics about conics. The second chapter is on affine geometry. The third and fourth chapters are about projective geometry. In the fifth chapter you will be led through Inversive geometry which functions as a base for the sixth and seventh chapter. The sixth chapter has as itst title Non-Euclidean geometry, but it is in fact the Hyperbolic geometry of Boljay in a formulation of Henry Poincar�. The seventh chapter is about Spherical Geometry. In the eighth chapter all of these geometries are demonstrated to be special cases of the Kleinian vieuw of geometry: that is, every geometry can be seen as consisting of the invariants of a specific group of transformations of the 2 dimensional plane into itself. It is clearly demonstrated that this is less trivial than you would expect.
I learned two things from this book. The first is, that you can, in principle, prove every theorem of geometry by just using Euclidean geometry. But if you do this, the amount of work it takes can be very huge indeed. It is a far better strategy to try to determine what geometry is best suited for the problem at hand, and solve it within that geometry.
Since the book gives a very clear picture not only of the particular geometries, but also to how the geometries relate to each other, you have, as an extra bonus, insight in the level of abstraction and the scope of your theorem.
The second thing I learned is how you can use geometry to make concepts as simple as 'triangle' precise. What I mean is this: a right angle triangle is not the same as an equilateral triangle. But both are the same in the sense that they are both triangles. The question is this: how can two 'things' be the same and at the same time not 'the same'? The book gives an answer to this 'question about the meaning of abstractions'. It gives the following solution. Take a triangle, ANY triangle. Consider the group of all affine transformations A (which consists of an uncountably infinite set of transformations.) If you subject this one triangle Tr to every affine transformation in this group A, you will have created a set consisting of exactly ALL triangles. In other words, the abstract idea of 'triangle' consists of ONE triangle Tr together with the set of ALL affine transformations. You can denote this as the pair (Tr, A). In the same way you can express the abstract idea of ellipse by the pair (El, A), and the abstract idea of parabola by the pair (Par, A). And, by passing to the more abstract Projective geometry, you can express the abstract idea of 'conic' by giving just one quadratic curve, be it a parabola, ellipse or hyperbola, by the pair (Qu, P), whereby P is the group of all projective transformations.
The book presupposes some group theory and some knowledge of linear algebra. Furthermore you have to know a little calculus. I have very little knowledge of group theory, and I have just about enough knowledge and skill about linear algebra to know the difference between an orthogonal and unitary matrix, and to know what eigenvectors are. I have studied the first 5 chapters of CALCULUS from Tom M. Apostol, which does not go too deep into linear algebra. This proved to be enough.
I have only one point of critique. Virtually all problems in the book are of the 'plug in type', even those at the end of every chapter (from which, by the way, you cannot find the solutions at the end of the book, while the solutions of those in the text can be found in an appendix). If you have understood the text, you have no difficulties whatsoever to solve them. The problems are not challenging enough to give you a real skill in all of these geometries, although they do become more challenging in later chapters. They are only intended to help you to understand the basic principles of all of these geometries, no more, no less. So if you want to have a tool to help you in obtaining a greater skill in, say, the special theory of relativity by studying hyperbolic geometry, this is not a suitable book. That is why I have given it 4 stars, and not the full 5 stars.
I also have a piece of advise. Although the problems are, from a conceptual point of view, not challenging, a mistake is easily made. Therefore it is best to solve the problems by making use of a mathematical program like Maple or Mathematica. If you then have made a mistake, you can backtrack exactly where you have made it, and let the program take care of all of the tedious calculations. This has also stimulated to try to calculate some outcomes by following a different approach, and then to compare the results.
I have enjoyed studying this book immensely.

19 of 21 people found the following review helpful.
A Nice Introduction to Geometrys - Precise and Accurate!
By Shankar N. Swamy
This book is at the level of a freshman mathematics course.

Mainly deals with Affine, Projective, Inversive, Spherical and Non-Euclidean geometrys. The beauty of the book is in its accuracy. Someone has done a good job of technical editing! There is always a risk of getting things wrong when attempting to make mathematics accessible at a lower level. The authors seem to have avoided that pitfall with significant success. The subject matter is focused and to the point. At each point, it precisely explains what is intended and moves on without digressions.

I have had significant interests in geometries, and work in a area that uses some elementary projective geometry. At times I get asked some relatively simple questions such as "why do we need 4x4 matrices in Computer Graphics?" Often I just answer such questions to the minimum (" ... it makes applying translations easier ..."). I never proffer a deeper answer because most people I run into either have no background to understand a more technical explanation in terms of the algebra of projective planes or they don't care - they don't need to, for most of their work!. (Many of the computer graphics folks I have met think that the homogeneous coordinates is an ad-hok concept that was invented as a "trick"!)

Occasionally, I do run into some who are interested in knowing the analytical reasoning behind some of the transformations used everyday in computer graphics. This book demonstrated to me how to talk to some of those without having to use very abstract concepts of geometry. I read it first in 1999. I have revisited it since, many times for the nice figures they provide. First time, it took me about three "after work" months to study through the book - not bad at all for a 350+ pages mathematics book!

By looking at the diagrams in the book, I learned how to draw simple diagrams instead of abstract symbols to explain the concepts, theorems and problems. For a book that is as simple, the technical content is remarkably precise and accurate. The book assumes minimal background in mathematics.

Recommended for people interested in computer graphics and want to understand the transformations in there deeper (for whatever reason!), under-graduate students interested in geometry, and for anyone with a casual interest in geometry.

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