Average customer rating:
- Calculations are only as good as your numbers
- Pants on fire?
- Accepted History & Chronology Must Be Changed.
- Very Interesting
- History as Science Fiction
|
History: Fiction or Science? (Chronology, No. 1)
Anatoly Fomenko
Manufacturer: Mithec
ProductGroup: Book
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Similar Items:
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History: Fiction or Science? Chronology 2 (Chronology)
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History: Fiction or Science? Astronomical methods as applied to chronology. Ptolemy's Almagest. Chronology III
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ASIN: 2913621058 |
Book Description
Recorded history is a finely-woven magic fabric of intricate lies about events predating the sixteenth century. There is not a single piece of evidence that can be reliably and independently traced back earlier than the eleventh century. This book details events that are substantiated by hard facts and logic, and validated by new astronomical research and statistical analysis of ancient sources.
Customer Reviews:
Calculations are only as good as your numbers.......2007-08-03
Yes, we can all agree that mainstream history is nearly 100% BS due to politics, economics, ego, problems with dating techniques, and various conspiracies. Agreed. But, I've been researching the distinct possibility that human history (in terms of civilizations) are much more ancient than we've been told, so coming across this book was very interesting to me. I wondered how Fomenko could be wrong (if at all) because he is very persuasive in his presentations. Then it dawned on me. If at previous times in prehistory, due to the various catastrophies that are well documented (comets, asteroids, planetary disruptions, plasma discharge, pole reversals, etc) the Earth was in a different position in relation to the sun, different tilt on its axis, different orbit, different rotation (in terms of velocity and DIRECTION), and the continents were in different positions, then would this not cause the ancients to see the sky (constellations) differently? In other words, is Fomenko making erronious assumptions about the physics of the Earth in pre-history, which then corrupt his data with regards to dating the relevant astrology? The last event to seriously disrupt our planet occured roughly 3500 years ago, according to other good researchers, so is it possible Fomenko has been confused by this? The vastly different physics of our planet in the not so distant past may explain this confusion, which is not to say the "mainstream" version of history is correct; on the contrary. I am not an expert in these fields, but wanted to see if this idea could spark discussion.
Pants on fire?.......2007-07-19
Will people ever read before spamming? Yes, Jesuits could not rewrite world history alone, they had help. Anyway, Dr Prof Acad A.Fomenko does not point to jesuits as the driving force of world wide history manipulation in published volumes 1,2,3;, actually he barely mentions the poor devils. Check it with 'Search inside' feature, please. China is rarely mentioned either, in fact, Dr Fomenko is completely eurocentric. Right, his theory contradicts all mainstream schools of history, because in their actual state they are all built on blatantly erroneus chronology. You don't need a mysterious cabal (conspiracy) to falsify history, the falsification is its modus operandi. It is inherent to history(ians) to falsify (distort) events, as it is inherent to humans to boast as it is inherent to power (authority) to legimize itself by referrring to glorious past made to its own order. Dr Prof Fomenko and team have identified scores of instances of such manipulation in Russian, European, etc.. history, and delivered valid statistical proof thereof. His own 'reconstruction' is completely another story. Forget c14 as a valid method of dating. W.Libby has initially discovered a brilliant method of INDEPENDENT dating. Too bad, c14 method has become a joke after a forced marrige with dendrochronology with consensual chronological scale inbuilt. Radiocarbon method can't stand blind tests, but is so very productive as a rubberstamp.
Accepted History & Chronology Must Be Changed. .......2007-04-09
There is no doubt that history as most know it is a sham, & institution's version of History both University & Church is fradulent & inaccurate. Everything was established with an agenda, The real "Dark Ages" are now when we have access to incredible amounts of information past authorities & more important 'common folk' didn't have but our institutions & educators are slow to evolve because of what has ignorantly & arrogantly been taught for too long. This is on many subjects not just Chronology.
For anyone to question "Why would a Mathematician have anything credible to say of History?" The answer is from Dr. Fomenko's preface in the book: "It would be worthwhile to remind the reader that in the XVI-XVII century Chronology was considered to be a subdivision of Mathematics." These volumes could possibly be some of the most important works to date & should be read by everyone with an interest in History, especially professors & educators who have a duty to the public. I have read both books & must say that 'Chronology 1' has some very eye opening & revolutionary information. Even if these volumes are part true the implications are profound & opens the doors to further investigations & questions which must be done. I speak several different lanquages & must say the logic Dr. Fomenko uses with "inflection" of words & words being read from left to right in one region & right to left in another then written backwards, the removal of vowels & get down to basics of words, or different cities & locations having the same name etc. is correct. Vowel usage has always been optional & varied, actually complicating linquistics & study. The first thing one has to understand is that words never had a fixed spelling in history like we do now, the spelling of words was mutable & regional, as well as names & titles of people were vast, varied & changed, NOTHING WAS FIXED or understood linear. Matters of Life & Death as well as financial profiteering yesterday & today were & are made with ignorant, illogical & conspiratorial views of history & reality, it's time people get closer to the Truth & society collectively grow up.
Very Interesting.......2007-03-07
It is a good proposal and I believe it will mature into something even better in the future. I think it deserves to be read.
History as Science Fiction.......2007-01-10
Anatoly Fomenko has written a very intriguing book, full of pictures, charts, and computer 'proof' of his thesis: backwards of AD900 we don't really know what happened or when. Between AD900 and AD1600 there is more certainty, but there is still a lot of fuzzy ground, and things don't get reliable until we get past the 1600's where the printing press made it very difficult for the perpetrators of this timeline manipulation to change anything that had been committed to print. The Dark Ages did not happen. Books were burned for a reason. One organization has doubled the actual length of its existence by expanding the real chronology. Read why.
I had always wondered why Christ died about AD33 and yet men waited until the 11th century to form the Knights Templar, the Cathars, etc and go after the Holy Land by force. Why the 1000 year gap? Turns out there wasn't more than a 10-12 year gap and he proves it using astronomy. This also implies that the planet is not as old as we have been told, and current Christian and other creationist scientists are already championing that idea without being aware of Fomenko's book. The two groups, creationist scientists and the Russian mathematical analysts corroborate each other. Fascinating.
Of course, all this flies in the face of what we have been told traditionally is the 'proper' chronology of western civilization, and most readers will experience 'cognitive dissonance' in reading this book. It means that our history going backwards from AD1600 becomes progressively more incorrect and unreliable until it cannot be trusted at all... in the space of 700-800 years.
Naturally, the curious, open-minded reader will want to know WHO did this, WHY, and did any of the events we think of as really ancient ever happen?
Dr. Fomenko is a respected scientist/mathematician at Moscow State University who has already answered these questions to the satisfaction of his initially skeptical colleagues. Most of them are now believers, a few still refuse to believe (the usual diehards), and of course the western press has ignored Fomenko's work -- for obvious reasons when you read the book. The ones who perpetrated this chronology ruse have a lot to answer for. They are still with us. That's why this book is a well-kept secret.
I gave the book a 4-star rating because I was unable to check out some of his claims; those I checked were as he said. But if even 1/3 of his claims are true, this punches a big hole in what we think is our history, the meaning of western civilization, our educational process (for repeating the ruse as gospel), and the trustworthiness of the organization that perpetrated this ruse, well-intentioned or not.
This book relates to current research into a Young Earth paradigm, to John Keel's discoveries about our planet, and Fr Malachi Martin's insights (in his now out-of-print books). We are indeed sheep who are manipulated and kept ignorant -- for a reason. While knowing what these men have to say may be the "booby prize" (as in: 'what can you do with this knowledge?'), it will provide interesting reading. Didn't someone say: "...and the Truth will set you free."?? For you to judge if this book contains the truth.
Book Description
This extensively revised and expanded third edition of the Artech House bestseller, Computational Electrodynamics: The Finite-Difference Time-Domain Method, offers you the most up-to-date and definitive resource on this critical method for solving Maxwell's equations. There has been considerable advancement in FDTD computational technology over the past few years, and this new edition brings you the very latest details with four new invited chapters on advanced techniques for PSTD, unconditional stability, provably stable FDTD-FETD hybrids, and hardware acceleration. Moreover, you find many completely new sections throughout the book, including major updates on convolutional PML ABCs; dispersive, nonlinear, classical-gain, and quantum-gain materials; and micro-, nano-, and bio- photonics.
This single resource provides complete guidance on FDTD techniques and applications, from basic concepts, to the current state-of-the-art. It enables you to more efficiently and effectively design and analyze key electronics and photonics technologies, including wireless communications devices, high-speed digital and microwave circuits, and integrated optics. You find sample FDTD codes written in Matlab® that serve as a self-guided refresher, and examples of how to use the FDTD method on a wide range of projects in the field. What's more, to supplement the third edition, the authors and publisher have created a Website where you can find solutions to the problems, sample FDTD PML codes, text updates/errata, and downloadable color graphics and videos. Consequently, this new edition is the ideal textbook for both a senior-year undergraduate elective course and a graduate course in computational electrodynamics.
Customer Reviews:
Brilliant textbook on computational EM.......2007-02-04
This is THE STANDARD reference on FDTD methods in computational electrodynamics. Moreover, even if time-domain is not your main thing but you still work with computational EM, add this to your library. It is wonderfully written, simultaneously easy to read and deeply comprehensive. You can get your own codes going by reading this book. After applying the things you learn here you will have a renewed inspiration in Maxwell's equations and E&M.
The book for FDTD.......2005-11-09
This book is an excellent and thoroughly enjoyable reference/tutorial. The book is suitable for use in an advanced undergraduate/first-year graduate class with a prerequisite of one semester of undergraduate E&M. (The authors' preface indicates that this prerequisite is not entirely necessary, but I don't see how you could understand what is going on without it.)
The book can also be used for self-study. In this vein, the book's website contains 1d-, 2d-, and 3d-matlab scripts that are excellent for learning how to actually implement all of this stuff. The third edition weighs in at just over 1000 pages with a price tag of $139, which is $10 cheaper than the 2nd edition was when it came out.
Allen Taflove is, perhaps, the leader in the development and use of this technique. Allen is now at Northwestern. Susan Hagness was a recent PhD student of his (1998) and is now an associate professor in the Electrical and Computer Engineering department at the University of Wisconsin. The authors are at the forefront in the development of applications.
The third edition is significantly larger than the 2nd edition and includes several applications chapters that were cowritten with the major researchers in the field. The extraordinary explosion of application areas for FDTD is captured in the later chapters, and these chapters give students and new researchers a clear flavor of the vitality and interest in the field which extends from the detection of breast cancer to ELF pulses produced by earthquakes. It is refreshing to find authors who so readily give credit to others in their field. Taflove and Hagness have been very gracious in this regard, and as a consequence have a much better book and a very detailed and useful bibliography.
I very heartily recommend this book to anyone who wishes to use FDTD techniques.
Agree with Prior Reviewer.......2002-09-21
I cannot quite honestly give this book (*first* edition, not second) a full five-point-zero stars because it somewhat comes apart the closer one gets to the final chapters. I read this book a few years ago, so I apologize for lack of specificity. However, I completely agree with the prior reviewer who stated that this book is better than Kunz's and Luebbers' book, which I appears to be a slightly edited compilation of previous publications --- even if that is completely untrue. In fact, in my opinion, Taflove's book (again, first edition) is a *much* better textbook than Kunz and Luebbers.
The Book News review is somewhat misleading. Taflove derives the difference equations in full, painstaking detail. (Perhaps the Book News reviewer fell asleep during that portion.) For me, this was the most valuable and educational portion of the book. Example applications have their place, but only after understanding the basic principles. Taflove did an excellent job in describing these principles, which go far beyond the basic Yee algorithm (e.g. extrapolation techniques and incorporation of BC's). Those readers familiar with other FD books should understand what I'm saying here: Anyone who reads this book and understands it will not only be conversant about FDTD but should also be able to write solid working codes. With the K&L book, this is very questionable.
A good overview of FD-TD method.......2000-05-25
A good intro book for the FD-TD method with many applications. The list of references at the end of each chapter is also very useful. Some of the material is now outdated and needs corrections, but otherwise a great reference for CEM. I would recommend this book over the Kunz & Luebbers FD-TD book.
Average customer rating:
- Schaum's Outline of Quantum Mechanics
- Very useful, needs a rewrite ...
- Best value for money
- Excelente libro de texto sobre Física Cuántica.
- Not great
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Schaum's Outline of Quantum Mechanics (Schaum's)
Eliahu Zaarur , and
Phinik Reuven
Manufacturer: McGraw-Hill
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Schaum's Outline of Modern Physics
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Problems in Quantum Mechanics: With Solutions
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ASIN: 0070540187 |
Book Description
This powerful study guide makes sometimes-daunting material accessible. More than 240 problems solved step-by-step help students gain a firm grasp of proper methods and a solid foundation for further study. All the essentials of this basic course are covered clearly and concisely, cutting study time and making important points memorable. The next-best thing to a private tutor, this study guide helps boost grades and proves ideal for professionals, too, who wish to study solo to master this discipline.
Customer Reviews:
Schaum's Outline of Quantum Mechanics.......2007-01-21
Basic information, and lots of problems (many worked out, others with answers). Makes for good practice and review.
Very useful, needs a rewrite ..........2006-11-19
This book is useful. There is a variety of problems from fairly easy to difficult, but in general, the problems are similar (and often the same) as problems in graduate texts such as Merzbacher, Cohen, etc.. My complaint with this book is not necessarily the typos (although they should be fixed given the popularity of this book). My complaint is that that the authors sometimes skip steps in the solutions that are so critical, that is is nearly impossible to understand them. A useful solution can leave out mathematical drudgery, and calculations, but it shouldn't leave out critical steps that have been covered earlier in the book, because a solutions manual like this is not usually used as a textbook, it is used as a reference.
For instance I may want to try a practice problem on the Variational Method, and the problem leaves out steps that may have been covered in earlier chapters. So I spend hours playing with the problem until I find the solution. This is not useful, and not what a problems and solutions book should do. I understand that not every step can be included, but I would rather see more complete solutions, which might sacrifice the unsolved problems and the blank pages at the end of the book.
This book seems to have been typewritten from the authors' handwritten notes, because many of the typos are consistent with penmanship. But one of the authors should go over all of the solutions, flesh out the missing steps, and correct the errors. Without doing this, the physics student can't rely on this book as a trusted source, since they never know if the error they encounter is a typo or their own mistake.
Regardless, this is a useful book, and I have learned a lot from it.
Best value for money.......2006-08-25
This book is a complete introductory course that presents the basic concepts of Quantum Mechanics.
As a newcomer to this subject, I was puzzled by the separate definitions of the similar notions of inner product (denoted
< , >), scalar product (denoted ( , )), scalar product (denoted
< | >) and Dirac bracket (also denoted
< | >). It would be most helpful if, in a future edition, the authors could define these four notions in one place, along with an explanation of the differences (if any) between them.
Apart from this minor annoyance, for which I deducted one star, this book succesfully tackles a most important and difficult subject. The writing and presentation are up to the usually high standards of Schaum's Outline series. There are plenty of exercises, both solved and unsolved. And it's excellent value for money. For the price, there's no serious competition.
A better mathematical treatment, based on linear vector spaces, may be found in "Principles of Quantum Mechanics" by Shankar.
Excelente libro de texto sobre Física Cuántica........2006-01-30
La mayoría de los textos de Física Cuántica que he leído, son inabordables en algunos momentos por la complejidad de la misma notación, falta de ejemplos directos de aplicación, y deficientes estructuraciones del contenido. El resultado es que finalmente te ves rodeado de una gran cantidad de libros de texto, para cubrir diferentes capítulos.
En cambio este libro, sobresale con holgura, cubriendo todas esas carencias.
* La estructura del libro es correcta.
* El número de ejemplos es muy amplio (como si no en un Schaum's).
* La notación es la que normalmente se utiliza en este campo.
¡ Qué más se puede pedir, en un libro de texto !.
Carlos Ortega
2006-01-30
Not great.......2006-01-28
I bought this book as I was taking undergraduate-level Quantum Mechanics. While it has a better review and analysis of bra and ket notation than, say, the Griffiths text, and has excellent applications (square well, energy levels, Landau Levels, etc.), it was practically useless until I finished the course. Additionally, as others have pointed out, the outline is riddled with errors. It is not as well-written as Murray Spiegel's Vector Analysis or Fourier Series books. If you're a graduate student or want a refresher course, I'd consider it. Otherwise, this is not the ideal choice.
Average customer rating:
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Turbulence Models and Their Application: Efficient Numerical Methods with Computer Programs
Tuncer Cebeci
Manufacturer: Springer
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ASIN: 3540402888 |
Book Description
In this book, after a brief review of the more popular turbulence models, we present and discuss accurate and efficient numerical methods for solving the boundary-layer equations with turbulence models based on algebraic formulas (mixing length, eddy viscosity) or partial-differential transport equations. A computer program employing the Cebeci-Smith model and the k-e model for obtaining the solution of two-dimensional incompressible turbulent flows without separation is discussed in detail and is presented in the accompanying CD.
The numerical solution of the boundary-layer equations with flow separation is also discussed and an interactive boundary-layer method developed by the author is described in detail. A computer program for obtaining solutions on airfoils and wakes for a wide range of angles of attack, including stall, is discussed and presented in the accompanying CD. In many respects, this book can be seen as complimentary and supplementary to the author's
Analysis of Turbulent Flows.
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Stability and Transition: Theory and Application: Efficient Numerical Methods with Computer Programs
Tuncer Cebeci
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ASIN: 3540201602 |
Book Description
Cebeci addresses transition from laminar to turbulent flows and considers solutions, mainly with the help of the linear stability theory and the ways in which it can be implemented accurately by numerical procedures. The main concern is transition of wall boundary layers, although one chapter is devoted to an approach based on the Navier-Stokes equations. The first three chapters summarize physical knowledge of the transition process, consider the stability equations and methods for predicting transition by linear stability theory, and describe efficient and accurate numerical methods for the solution of stability equations. Chapters 4 to 7 describe computer programs based on stability-theory approach to identify the location of transition in two- and three-dimensional incompressible and compressible flows, respectively, and Chapter 7 describes a computer program within the framework of parabolized stability equations. These programs are provided on an accompanying CD-ROM.
Book Description
Since the publication of "Spectral Methods in Fluid Dynamics", spectral methods, particularly in their multidomain version, have become firmly established as a mainstream tool for scientific and engineering computation. While retaining the tight integration between the theoretical and practical aspects of spectral methods that was the hallmark of the earlier book, Canuto et al. now incorporate the many improvements in the algorithms and the theory of spectral methods that have been made since 1988. The initial treatment Fundamentals in Single Domains discusses the fundamentals of the approximation of solutions to ordinary and partial differential equations on single domains by expansions in smooth, global basis functions. The first half of the book provides the algorithmic details of orthogonal expansions, transform methods, spectral discretization of differential equations plus their boundary conditions, and solution of the discretized equations by direct and iterative methods. The second half furnishes a comprehensive discussion of the mathematical theory of spectral methods on single domains, including approximation theory, stability and convergence, and illustrative applications of the theory to model boundary-value problems. Both the algorithmic and theoretical discussions cover spectral methods on tensor-product domains, triangles and tetrahedra. All chapters are enhanced with material on the Galerkin with numerical integration version of spectral methods. The discussion of direct and iterative solution methods is greatly expanded as are the set of numerical examples that illustrate the key properties of the various types of spectral approximations and the solution algorithms.
A companion book "Evolution to Complex Geometries and Applications to Fluid Dynamics" contains an extensive survey of the essential algorithmic and theoretical aspects of spectral methods for complex geometries and provides detailed discussions of spectral algorithms for fluid dynamics in simple and complex geometries.
Book Description
This book is intended as a textbook for a first course in computational fluid dynamics and will be of interest to researchers and practitioners as well. It emphasizes fundamental concepts in developing, analyzing, and understanding numerical methods for the partial differential equations governing the physics of fluid flow. The linear convection and diffusion equations are used to illustrate concepts throughout. The chosen approach, in which the partial differential equations are reduced to ordinary differential equations, and finally to difference equations, gives the book its distinctiveness and provides a sound basis for a deep understanding of the fundamental concepts in computational fluid dynamics.
Customer Reviews:
An easy presentation to not so easy concepts!.......2007-08-23
This book presents some fundamentals of CFD based on straightforward mathematical tools giving fast access to very interesting general behaviours of PDE families. Apart from the introduction of basic concepts, finite differences and finite volume discretizations, the heart of the book lies in chapters 4,6,7 where a clear and systematic methodology to go from PDE to ODE to O(delta)E is presented. The classical stabilities associated to the most famous time steppings are presented. Some other features such as multigrid, splitting, and upwind dissipations are presented in the same clear setting. The book is very well written, clear and straightforward. I hope more advanced topics will be also included in further editions!
Fundamentals of Computational Fluid Dynamics.......2001-07-09
Fundamentals of Computational Fluid Dynamics is one of several technically useful books on the subject. What sets it apart, however, is its ability to attract and maintain the reader's interest in what could otherwise be a dry topic.
The authors walk the student through a logical development of all aspects of the material. Helpful examples and end-of-chapter exercises solidify student learning in a practical manner. This book is an excellent resource, focusing on the fundamentals of the topic, and has my full recommendation.
Book Description
Numerical Methods in Astrophysics: An Introduction outlines various fundamental numerical methods that can solve gravitational dynamics, hydrodynamics, and radiation transport equations. This resource indicates which methods are most suitable for particular problems, demonstrates what the accuracy requirements are in numerical simulations, and suggests ways to test for and reduce the inevitable negative effects. After an introduction to the basic equations and derivations, the book focuses on practical applications of the numerical methods. It explores hydrodynamic problems in one dimension, N-body particle dynamics, smoothed particle hydrodynamics, and stellar structure and evolution. The authors also examine advanced techniques in grid-based hydrodynamics, evaluate the methods for calculating the gravitational forces in an astrophysical system, and discuss specific problems in grid-based methods for radiation transfer. The book incorporates brief user instructions and a CD-ROM of the numerical codes, allowing readers to experiment with the codes to suit their own needs. With numerous examples and sample problems that cover a wide range of current research topics, this highly practical guide illustrates how to solve key astrophysics problems, providing a clear introduction for graduate and undergraduate students as well as researchers and professionals.
Customer Reviews:
Extremely good introduction!.......2007-09-22
This is an extremely well written introduction to a rapidly developing field. The authors cover a broad swath of topics, providing a clear understanding of the physical principles underlying numerical astrophysics. Such a focus on basic principles and physical understanding ensures that one does not lose sight of the forest for the trees. I recommend this book highly for graduate students in astrophysics, as well as active researchers in the field who want a quick overview before going into the details.
HUGE disappointment.......2007-04-08
I was really looking forward to this title, hoping in a book that would go beyond the usual toy problems of typical standard numerical simulations books. Also knowing that this book included real working code I was also hoping it would bridge the huge gap between theory and practice with a practical approach. Boy, was I mistaken. hard to believe, but there is not a single line of code in this book! The numerical codes in Fortran (yuk) are just dumped in the CD and superficially described (just barely saying what it does and what the input and output are) in a final 10 pages ( yes, you read that well, 10 pages) "chapter" that looks more like an appendix to anyone with a little common sense. I know college professors can be a bit disoriented about what is important and what not in their field of research (I still my quantum mechanics prof. employed approximately the same time to try to explain us while there are 2n+1 numbers between n and -n and to introduce us to Fourier Transforms) but this is really too much! The bunch of theory and equations that this book is littered is totally useless unless you show me how these equations get implemented in code.
And if I have to wade through the code in a CD trying to figure it out by myself, what is the value of buying this book? Given this approach , I really pity the grad students of these guys...
Average customer rating:
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Principles of Mathematical Modelling: Ideas, Methods, Examples (Numerical Insights)
Alexander A. Samarskii
Manufacturer: CRC
ProductGroup: Book
Binding: Hardcover
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ASIN: 0415272807 |
Book Description
Mathematical modeling is becoming increasingly versatile and multi-disciplinary. This text demonstrates the broadness of this field as the authors consider the principles of model construction and use common approaches to build models from a range of subject areas. The book reflects the interests and experiences of the authors, but it explores mathematical modeling across a wide range of applications, from mechanics to social science. A general approach is adopted, where ideas and examples are favored over rigorous mathematical procedures. This insightful book will be of interest to specialists, teachers, and students across a wide range of disciplines..
Average customer rating:
- Teacher & Engineer
- An excellent text as either an introduction or a reference
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Numerical and Analytical Methods for Scientists and Engineers, Using Mathematica
Daniel Dubin
Manufacturer: Wiley-Interscience
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Classical Mechanics
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Introduction to Electrodynamics (3rd Edition)
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The Mathematica GuideBook for Numerics
ASIN: 0471266108 |
Book Description
* The electronic component of the book is based on the widely used and highly praised Mathematica software package.
* Each chapter of the bookis a Mathematica notebook with links to web-based material.
* The methods are applied to a range of problems taken from physics and engineering.
* The book covers elementary and advaned numerical methods used in modern scientific computing.
Customer Reviews:
Teacher & Engineer.......2005-03-04
This book is alright if you got it for a price around $20.
An excellent text as either an introduction or a reference.......2003-10-07
This book explains how to solve a variety of useful problems in mathematical physics with Mathematica. The clear and concise presentation of material facilitates rapid advancement in the subject. In addition, many interesting physical examples and problems are included. I highly recommend this book as a text for undergraduate mathematical physics instruction.
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