Average customer rating:
- The best book on electrodynamics
- Very good text
- watch editions
- Don't buy J.D. Jackson!!
- Excellent, Easy to Read
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Introduction to Electrodynamics (3rd Edition)
David J. Griffiths
Manufacturer: Benjamin Cummings
ProductGroup: Book
Binding: Hardcover
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Introduction to Quantum Mechanics (2nd Edition)
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Div, Grad, Curl, and All That: An Informal Text on Vector Calculus, Fourth Edition
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Mathematical Methods in the Physical Sciences
ASIN: 013805326X |
Book Description
Features a clear, accessible treatment of the fundamentals of electromagnetic theory. Its lean and focused approach employs numerous examples and problems.
Carefully discusses subtle or difficult points. Contains numerous, relevant problems within the book in addition to end of each chapter problems and answers.
Customer Reviews:
The best book on electrodynamics.......2007-07-27
A fantastic textbook, ideal for any undergraduate, and highly recommended to a graduate student for a "grounded" reality of what one is talking about in doing problems in Jackson! One can teach oneself from this book. Griffiths is a master of understanding and showing.
This is written as a graduate physicist.
Very good text.......2007-04-30
Yes - this is a good intro to electrodynamics, just as everyone says. It isn't a substitute for Jackson - they are in different classes, each with their own intended audiences and purposes. If you're fairly new to the subject, here's a little secret: in addition to this book, get vol 2 of The Feynman Lectures in physics! There's no equal to Richard Feynman when it comes to conveying complex abstractions in ways that even a caveman could understand (not even Geico Insurance). Later, when you're already grounded in the subject, by all means, knock yourself for a loop with Jackson.
watch editions.......2007-04-06
Great textbook, amazingly readable, but watch out which edition you have. The so-called "Eastern Economy Edition" (paperback and marketed in Asia)is missing a few things, notably labels on some problem diagrams. If you don't have friends with the real one, be sure to avoid that.
Don't buy J.D. Jackson!!.......2007-03-08
Unless: a) your professor makes you, b) you have bought Griffiths to actually learn something, c) all of the above. Griffiths should be a mandatory graduate text to introduce and lay foundations for more advanced concepts- it bridges the gap really well.
Excellent, Easy to Read.......2007-03-08
Griffiths does an excellent job presenting the material in an easy to read, conversational manner. He focuses on both the physics and the mathematics in a non-pretentious way, unlike many other books. It may not be as technically deep as, say, Jacksons book, but it gets the job done. Highly recommended.
Average customer rating:
- It was a good deal too
- Theoretical background for Operations Management - setting a new standard
- written with the heart of a teacher
- Exceptional enlightened and insightful!
- Excellent and valuable book
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Factory Physics Second Edition
Wallace Hopp , and
Mark Spearman
Manufacturer: McGraw-Hill/Irwin
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Similar Items:
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Value Stream Management
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The Toyota Way
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Modeling and Analysis of Manufacturing Systems
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The Goal
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Lean Thinking : Banish Waste and Create Wealth in Your Corporation, Revised and Updated
ASIN: 0256247951 |
Book Description
Comprehensive Introduction to Manufacturing Management text covering the behavior laws at work in factories. Examines operating policies and strategic objectives. Hopp presents the concepts of manufacturing processes and controls within a "physics" or "laws of nature" analogy--a novel approach. There is enough quantitative material for an engineer's course, as well as narrative that a management major can understand and apply.
Customer Reviews:
It was a good deal too.......2007-08-16
The Book was in Excellent shape. It was a good deal too
thank you
Theoretical background for Operations Management - setting a new standard.......2006-10-03
This book provides you with the fundamental insights of manufacturing and assembly. Even though I do not like statistics to much, the book is written in a understandable manner and provides the fundamental knowledge to understand what is going on in manufacturing. Based on this knowledge, the flaw of MRP-systems are even explained as well as the basics of JIT/Lean. The book provides mainly the hardfacts of this science and for practical people, reading first Quick-Response-Manufacturing (from Rajan Suri) might be the easier way for many of us and gives you the motivation to take a deeper look later on - as provided by Factory Physics.
Factory Physics describes not only how to describe a single workstation and the interactions between many of them, than as well the great importance of variability reduction in a production line and how to analyse it. CONWIP-lines, as a mix of push-pull, are a central key in this book and a simple way to analyse the performance of any system is provided by the book. This book, together with Quick-Response-Manufacturing (this book includes important softfactores as well) have changed drastically my way of operational thinking and given me a sense, which system to apply (QRM or JIT/Lean) and why. The insight can even be used for services as well. One central point is the utilisation of a workstation and the knowledge, that the more you reduce variability in arrivals and processing, the higher the utilisation can be - still achieving low lead times. You will find as well important and simple laws helping you out in the daily business (Little's law and queueing theory).
As for JIT/Lean, lead time reduction can use the same japanese tools:
- SMED: setup-time reduction (lot sizes for reduction in lead time and WIP)
- TPM: productive maintenance (higher machine availability and decrease of variability)
- ZQC: fool-proof quality inspection for Zero defects (against capacity lost and to decrease variability)
All the books mentionned above, have a big advantage over traditional SCM-books: they provide you with a framework how to trim a single chain-element of the supply-chain and therefore how to built the whole supply chain. The operational strategy should be derived from the overall company strategy and with this new insights you can tailor a unique production system that fits your company's goals - or even give you an advantage over your competition. Anyway, it will not make obsolet the importance of having a sound and consistant overall business strategy (for your markets) first!
Enjoy reading, Best Regards
written with the heart of a teacher.......2006-03-13
Though the two authors are consultants, they are foremost - teachers. What is useful, and kind to a degree, is they put an effort to explain the numbers as pragmatic as possible. That idea made this book very accessible. To the industrial engineers or those who are involved (and passionate) in operations or in understanding systems - next to the Industrial Engineering Handboook, this should be in our library.
Exceptional enlightened and insightful!.......2006-02-18
I found this book to be very insightful. It helps to explain many of my own observations in my factory. The authors did an excellent job of explaining the key concepts using only average use of mathematics and in simple layman's terms. The readers will only need basic mathematics/beginner calculus, and basic statistics. Reading it was like discovering new ideas to implement in the factory to quickly realize efficiencies and cost savings. It was one of the best books I have laid eyes on in a very long time.
I highly recommend this book for every mfg and production engineers working in assembly or automation-driven factory. This book is not applicable to chemical processing, thus may not bring significant values to chemical or petroleum engineers.
Excellent and valuable book.......2005-12-23
This is the best course textbook I have had so far over about ten industrial engineering courses (and I have had some very good textbooks and courses). The book basically describes how to analyze and improve manufacturing operations through examining key areas that include: variability and its sources, push and pull systems, and supply chain management.
The authors approach is to present ideas in a very clear and relevant way. What I particularly like is that they do a great job putting things into perspective in a style that is highly readable. While there is some math involved if one wants to delve into the details that are in side notes, a basic understanding of calculus is more than sufficient. The authors are clearly very bright and, more importantly, are able to communicate very effectively and with a sense of humor.
This book can definitely be read on a stand-alone basis outside of a school environment. Many of the central ideas are very valuable.
Book Description
In this groundbreaking book, the renowned theoretical physicist Lee Smolin argues that physics—the basis for all other science—has lost its way. The problem is string theory, an ambitious attempt to formulate "a theory of everything" that explains all the forces and particles of nature and how the universe came to be. With its exotic new particles and parallel universes, string theory has captured the public"s imagination and seduced many physicists. But as Smolin reveals, there"s a deep flaw in the theory: no part of it has been proven, and no one knows how to prove it. As a scientific theory, it has been a colossal failure. And because it has soaked up the lion's share of funding, attracted some of the best minds, and penalized young physicists for pursuing other avenues, it is dragging the rest of physics down with it. With clarity, passion, and authority, Smolin charts the rise and fall of string theory and takes a fascinating look at what will replace it. A group of young theorists has begun to develop exciting new ideas that are, unlike string theory, testable. Smolin tells us who and what to watch for in the coming years and how we can find the next Einstein. This is a wake-up call, and Lee Smolin—a former string theorist himself— is the perfect person to deliver it.
Customer Reviews:
Scientific progress is never cut and dried.......2007-10-08
Lee Smolin presents a harsh critique of the last 30 years in theoretical physics, written by one of its practitioners. He makes the excellent point that science is a human activity like anything else. Progress is always hard to predict; scientists can and do get caught up in dead ends. Smolin thinks string theory is one such dead end, and makes a good case for it.
I think that, if anything, Smolin is a little too gentle on the field. The development of the atomic and hydrogen bombs left a tremendous impression that big money put into physics would bring big results. In recent years that hasn't happened. There are so many unanswered questions out there in science, so many important fields where solutions are desperately needed. When I consider the construction and operation of particle accelerators and other high-tech equipment, I can't help but think of the huge cost. The same amount of cash invested elsewhere might have brought much more in the way of useful results.
I am the mother of a 10-year-old boy attending public school. His instruction sometimes seems to me like a mishmash of well-meaning educational reforms that have been implemented with little or no testing to see if they worked or not. I am frankly disgusted by the quality of most research in the area of education--sample sizes too small, no proper controls, subjects followed for too short a time, etc. The cost of operating a single particle accelerator for six weeks probably exceeds all the funding for educational research around the world for the entire year. Yet which has the most potential for making major progress? Maybe it's time to back off on funding big physics projects for a while.
I would also like to point out that the building and use of instrumentation for high-energy physics is highly dependent on cheap fossil fuels. The future supply of such fuels is by no means guaranteed. The peak oil problem appears to be largely ignored by high-energy physicists today, but has the potential to significantly affect their ability to conduct experiments.
I really enjoyed Smolin's chapters on looking for seers rather than technicians in science. I especially liked his description of how unconventional scientists have built a career without a university job. Smolin points out that a typical professor spends a majority of his week on teaching, grant proposals, administrative tasks, and the like, leaving a surprisingly small amount of time available for actual research. Having a day job outside the field is not as big a hurdle as it might seem.
I tend to agree with Smolin that the big advances of the future are likely to come from completely unexpected directions. I can't wait to see what they are.
physics from many angles.......2007-10-05
This book provided several discussions pf physics and quantum theory. its good because the author speaks of the history the the originators of physics theory and the current champions of thought.
A mixed bag.......2007-10-04
At the moment, string theory appears to have many (possibly an infinite number) of "metastable vacua", each of which would allow for a universe with its own laws of physics. (For a brief, comic, yet essentially correct summary of the history of this idea, see Peter Shor's review here. For those who don't know, Shor is a celebrated quantum-information theorist.) According to the (far from established) inflationary model of cosmology, there is a vast collection of universes (the "multiverse") with diverse laws of physics. Which universe we find ourselves in is a matter of random selection, but of course we must be in a "biofriendly" universe, one whose laws of physics allow for the appearance of intelligent life.
The core argument of this book is presented on page 164-165 (US hardcover edition), where Smolin writes, "when it comes to the biofriendliness of our universe, we have at least three possibilities:
"1. Ours is one of a vast collection of universes with random laws.
"2. There was an intelligent designer.
"3. There is a so-far-unknown mechanism that will both explain the biofriendliness of our universe and make testable predictions by which it can be confirmed or falsified.
"Given that the first two possibilities are untestable in principle, it is most rational to hold out for the third possibility. Indeed, that is the only possibility we should consider as scientists, because accepting either of the first two would mean the end of our field."
I find this to be an astonishing argument. First of all, I don't know what "most rational" is supposed to mean. More importantly, to reject a scientific hypothesis for purely personal reasons (it "would mean the end of our field") is at best novel, and at worst absurd.
Very few string theorists are happy that #1 seems, at this point, to be the most likely outcome of string theory, and many hope that #3 will somehow eventually emerge. But to throw out the whole framework, simply because we don't like the result, cannot be said to be a scientific attitude.
One thing you won't learn in this book (unless you read it very carefully, and between the lines) is that the other approaches to quantum gravity advocated by Smolin have not come any closer to predicting specific experimental results than string theory has. Smolin talks about possible violations of special relativity, but these are not (as he admits on page 237) a definite prediction of loop quantum gravity. He has said (on Peter Woit's blog) that any quantum field theory in any number of dimensions is compatible with loop quantum gravity. If true, this would make loop quantum gravity even less capable than string theory of picking out our particular laws of physics.
Smolin also discusses issues of sociology in physics. On page 335-336, he asserts that the all the truly negative characterizations of job candidates that he has ever heard have had a component of racism and/or sexism. I am on the faculty of the physics department of a research university, and I can only say that my experience has been entirely different. I have simply never heard a racist or sexist denigration of one scientist by another, nor have I ever felt that anyone was being evaluated by criteria other than merit. I think that there are definitely issues of culture and how we can construct scientific communities that have broader appeal, and that there are physicists who are not as sensitive to these issues as they might be, but I cannot accept Smolin's claim that the relatively small percentage of women and blacks in physics is due to "blatant prejudice".
Finally, Smolin discusses the issues of "seers" vs "craftspeople" in science, and argues that we should be supporting more "seers". Among the existing seers, he lists some (such as Roger Penrose and Gerard 't Hooft) who made their reputations primarily as craftspeople ('t Hooft received the Nobel Prize for his work on the renormalization of gauge theories, and Penrose did celebrated work on the singularity theorems of general relativity). Their record as seers has been less successful; none of their recent ideas on modifications of quantum mechanics have panned out as yet. Smolin laments the fact that more attention is not paid to these forays into alternatives to quantum mechanics. But 't Hooft and Penrose do not agree on what modifications are needed. Other seers identified by Smolin propose violations of special relativity, rather than (or in addition to) violations of quantum mechanics. Perhaps this is all deep thought, but there is little to decide, at this point, which if any of these avenues should be pursued. Most physicists have therefore sensibly adopted a "wait and see" attitude.
Even if we accept Smolin's argument that we need new seers, how are we to find them? Smolin writes (page 353) that in order to discover "the visionaries who ignore the mainstream and follow their own ambitious programs", we should "find at least one accomplished person in the candidate's field who is deeply excited about what the candidate is trying to do". So, the candidate's program had better not be *too* far off the mainstream; there has to be at least one "accomplished person" who is "deeply excited" about it. But if one deeply excited professional is good, wouldn't more be better? Wouldn't that up the odds that the program was, indeed, worthwhile? Oh wait, that would be just what we have now ... a system where there is constant debate, emergent consensus on the most promising approaches, and distribution of research funds primarily (but by no means exclusively!) to those approaches that appear, in the consensus view, to be most promising. To paraphrase Winston Churchill on democracy, this system for distributing funds for science may be the worst ever devised, except for all the others.
So, should you buy the book? I feel that it gives a distorted picture, by emphasizing the weak points of string theory while ignoring the (many more, in my view) weak points of the alternatives. It seems to me that the essence of the book's argument against string theory is captured by the excerpts above, and by Shor's review. Then there is a lot of discussion of groupthink in scientific culture. For me, it doesn't add up to an appealing package, but your mileage may vary.
The Endless Quest Continues .......2007-10-04
I like Lee Smolin and this is a good exposition of the current quandary in Physics. When the mathematicians "hijacked" physics in the 1920's, they created ever-so elegant formulas and abstraction upon abstraction upon abstraction. "Just give me a formula!" was their mantra, and what it all really "means" was not their concern. This is the essence of Bohr's position (no pun intended), and Einstein was not able to answer, even though he knew something was missing.
String theory has many intriguing ideas, and it's supporters should not be easily dismissed. Again and again, we come back to the basic question...particle or wave? Wavicle? Partiwave? String?
Outstanding piece of writing, A must-read for any science enthusiast........2007-09-22
I found this book to be superbly written and full of fascinating insights. I really loved reading it. Many of the longer reviews here do a great job of reviewing the content of the book, so I'll stick to offering my opinion.
I will no doubt read this book again in the future as much of the content was way over my head. However, as with any great book on any subject, this did not prevent me from thoroughly enjoying it and learning a lot. What makes it so great is that each time I read it I will learn more.
I want to thank Lee Smolin for putting the current state of his field in some perspective. I highly, highly recommend this book!
Customer Reviews:
Superb book........2007-06-15
This book provides an exceptional introduction to nonlinear dynamics. Math books are often trapped in equating rigor with formalisms and in compromising intuition to generalities. Strogatz book provides an exemplary guideline how both intuition and rigor may be served to transform a difficult topic into fun reading and highly applicable set of ideas. Here are the key elements of what you will find in this book.
A. The book builds up intuitive understanding of the key ideas of the field
from simple one dimensional dynamics to complex multi-dimensional behaviors.
B. Each chapter contains fascinating applications -- from fireflies synchronization and josephson junction to population dynamics and chaotic laser behaviors-- which are
fun to read and useful if you need to apply dynamics to solve research problems.
C. There are ample exercises and solutions to render this ideal book for self-learners. It provides a relatively broad coverage of the key ideas of the field, without taxing the reader with far corners of little interest.
Great book for beginners.......2007-05-14
Nonlinear dynamics and chaos is an excellent introductory book. It explains this complex looking subject in very simple and intuitive fashion. I recommend this book anyone who are interested in chaos/nonlinear dynamics. It even doubles as a fun book!
Great for an introduction but not for digging in for details.......2007-01-05
I think this is one of the best books for understanding the Phase Spaces and Bifurcations. It is really easy to follow and understand, even for people without background on nonlinear subjects. Yet, it is not the right book for engineers to read and start to solve their own detailed problems. People who seeks for a book to get into the subject or who wants to have a nice reference; BUY THIS BOOK. By the way, its price is reasonable.
Shockingly Readable.......2007-01-04
I bought this book as a textbook for a class, and I have to say that it is a surprisingly readable math book. The class only used the first few chapters, but I find myself flipping through the rest of the book and trying to understand more advanced material. This is a good book for a scientist who needs to learn linear and nonlinear dynamics but is a little intimidated.
Keep in mind, this is a math book, and no writer can turn math into something it isn't. Still, the writer gives lots of relevant examples (especially in the problems--the only complaint I have is that the solutions in the back don't give any explanation, and these solutions are a bit sparse), and milks as much storytelling out of the subject matter as is possible. I thoroughly recommend it--it brings out the closet math geek in everyone!
incredible!.......2006-06-13
This is probably the best math book I've ever read. Unlike other stuffy books, this one is very personable and informal. It is extremely readable, the explanations are crystal-clear and very intuitive and well-motivated, plus the author inserts a lot of humor (it's so nice to be reminded that mathematicians are humans). There are fascinating examples culled from applications.
I should note two things. First, it is not a proof-based book. It discuesses the cool theorems and gives intuitive justifications, but the author is clear that his goal is to build intuition and give experience with the techniques, rather than mathematical rigor (thankfully, he is honest about this and points to areas where more rigor could be introduced, rather than giving the unnatural and awkward hybrid of rigor and intuition attempted by many calculus books). Second, a lot of the problems (though certainly not all) deal with pathological and/or special cases, so it's possible for teachers to give fairly onerous homeworks.
Book Description
The Self-Organizing Map (SOM), with its variants, is the most popular artificial neural network algorithm in the unsupervised learning category. Many fields of science have adopted the SOM as a standard analytical tool: in statistics,signal processing, control theory, financial analyses, experimental physics, chemistry and medicine. A new area is organization of very large document collections. The SOM is also one of the most realistic models of the biological brain functions.
This new edition includes a survey of over 2000 contemporary studies to cover the newest results; the case examples were provided with detailed formulae, illustrations and tables; a new chapter on software tools for SOM was written, other chapters were extended or reorganized.
Customer Reviews:
I love this book........2000-03-11
This is a wonderfully written, and excellent book. It assumes only minimal background knowledge but imparts a great deal of insight. I love the way that the author describes this area and the connections with deep and beautiful mathematics.
A very nice 'handbook' of sorts for users of SOMs........1999-08-05
The material is presented clearly and comprehensively from the unique perspective of the SOM originator himself. The inclusion of exhaustive references is particularly useful for the prospective researcher, but, at the risk of sounding ungrateful, I'm curious as to why paper titles were not included in the citations? Overall though, a very good reference.
Book Description
Fundamentals of Space Systems was developed to satisfy two objectives: the first is to provide a text suitable for use in an advanced undergraduate or beginning graduate course in both space systems engineering and space system design. The second is to be a primer and reference book for space professionals wishing to broaden their capabilities to develop, manage the development, or operate space systems. The authors of the individual chapters are practicing engineers that have had extensive experience in developing sophisticated experimental and operational spacecraft systems in addition to having experience teaching the subject material. The text presents the fundamentals of all the subsystems of a spacecraft missions and includes illustrative examples drawn from actual experience to enhance the learning experience. It included a chapter on each of the relevant major disciplines and subsystems including space systems engineering, space environment, astrodynamics, propulsion and flight mechanics, attitude determination and control, power systems, thermal control, configuration management and structures, communications, command and telemetry, data processing, embedded flight software, survuvability and reliability, integration and test, mission operations, and the initial conceptual design of a typical small spacecraft mission.
Customer Reviews:
Experts Define the State of the Art in Spacecraft Design.......2005-08-17
This book is on the design of spacecraft. In order to have the most up to date information available, each chapter is written by an expert in the particular field covered by that chapter. Looking at the brief introduction of the writers shows that most of them have been involved in the design of actual spacecraft for the John Hopkins Applied Physics Laboratory. These people have been actually working on the subjects they discuss.
This is the second edition of the book, published in 2005 to reflect the latest changes in the technology and science of spacecraft systems engineering that have occurred since the publication of the first edition.
Second an attempt has been made to make the material more suitable for a space systems course as a prerequisite to a senior class project to design and perhaps build and launch a spacecraft or spacecraft instrument.
The structure of the book is to break down the spacecraft into a number of sub-systems to a depth that should permit the reader to carry out a conceptual design.
This book describes the state of the art as it exists for spacecraft design.
Book Description
This market leading text is known for its comprehensive coverage, careful and correct mathematics, outstanding exercises and self contained subject matter parts for maximum flexibility.
Thoroughly updated and streamlined to reflect new developments in the field, the ninth edition of this bestselling text features modern engineering applications and the uses of technology. Kreyszig introduces engineers and computer scientists to advanced math topics as they relate to practical problems. The material is arranged into seven independent parts: ODE; Linear Algebra, Vector Calculus; Fourier Analysis and Partial Differential Equations; Complex Analysis; Numerical methods; Optimization, graphs; and Probability and Statistics.
Customer Reviews:
How could you possibly think this is helpful?.......2007-09-14
I took one look at this supposed solutions manual and knew it would be worthless. The book for accompanying this is pretty bad too, so why should I expect to get a decent solutions manual. This is a broad broad overview of each section and has maybe three actual solutions worked out if you're lucky. I get so sick of these authors doing the least amount of work for people that are really trying to learn this stuff. Unfortunately I will have to find help elsewhere. Also, if you want to review the book review it on the book page not on the solutions manual page.
Non Fiction.......2007-09-03
One of those bloodsucking drain the students dry of cash evil bastich series of textbooks. Some useful information, but probably up to version 27 of its cash gathering exercise by now. Exactly what textbooks should not be, a prime example of a RIP OFF, if there ever was one.
Not worth the money.......2007-07-16
This book was a major disappointment. Having taken 15 yrs off between getting my BS and starting grad school, I was looking for detailed examples of how to solve problems to refresh my memory. The solutions in this book skipped several steps and proved to be only marginally helpful, if even that. If you don't clearly understand the real text book, you won't get much help from this "solutions" manual. As in the text, there are not enough examples in this manual either. There is not even an example representing each subset of problems in the back of each chapter. Don't waste your money.
Owner of Advanced Eng Mathmatics, 9th edition.......2007-06-01
The student manual has been very helpful in getting me started back into the engineering mathmatics. It is nice to have a helper when I get stumped on some of the problems I know should be easy.
review on my book.......2007-05-07
I am satisfied with the quality of the book and the time it took for the book to reach me.
Book Description
The Third Edition of the standard textbook and reference in the field of semiconductor devices
This classic book has set the standard for advanced study and reference in the semiconductor device field. Now completely updated and reorganized to reflect the tremendous advances in device concepts and performance, this Third Edition remains the most detailed and exhaustive single source of information on the most important semiconductor devices. It gives readers immediate access to detailed descriptions of the underlying physics and performance characteristics of all major bipolar, field-effect, microwave, photonic, and sensor devices.
Designed for graduate textbook adoptions and reference needs, this new edition includes:
- A complete update of the latest developments
- New devices such as three-dimensional MOSFETs, MODFETs, resonant-tunneling diodes, semiconductor sensors, quantum-cascade lasers, single-electron transistors, real-space transfer devices, and more
- Materials completely reorganized
- Problem sets at the end of each chapter
- All figures reproduced at the highest quality
Physics of Semiconductor Devices, Third Edition offers engineers, research scientists, faculty, and students a practical basis for understanding the most important devices in use today and for evaluating future device performance and limitations.
A Solutions Manual is available from the editorial department.
Customer Reviews:
Great fundamentals book.......2007-03-09
This book had all of the information for a good foundation. It is easy to read.
3rd Ed a good book, but less like Sze, more like Ng..........2006-11-10
This is a fairly good book; however, it is more like a 3rd edition of the Complete Guide to Semiconductor Devices by the second author Ng than the expected updated edition of Sze's classic. Many of the figures are the same as in Ng's book, and although more topics are covered than in Sze's 2nd Ed, the theory of what is covered is often less in-depth. This is a nice book to have, especially if you do not have a copy of Ng's book, but I would not get rid of your 2nd edition of Sze yet. I am giving it 3 stars not because it is a bad book, but I truly believe there is a great deal of similarity between this 3rd Ed of Sze and the 2nd Ed of Ng's book, and I feel a little disappointed.
still a bible.......2005-11-03
This book is not for undergrad. But if you want to be a guru, you still find this book very useful.
A classic work.......2002-09-08
If there should at all be one point against this book, then it is that it is a priced high (at least in my country). However I found that the text was worth the investment. This book is one of those must-haves for every electronics engineer.
The text is presented in a way that will appeal to any student as well as working professionals, and the least one can say is that it is extremely well-written. This text is an indispensable one.
A classic textbbok for semiconductor physics.......2001-12-19
As well known, this book is one of the classic books for semicoductor physics. It provides a lot of information in various devices, although some probably is outdated. However, as I know, the author was trying to tell the readers why and how semiconductor devices become what we see today. Because only we know about what the pioneers thinked, we can further modify or invite new semiconductor devices. I must agree that this book is not so easy to follow and read, but, don't froget, this book is devoted for advanced semiconductor physics course. It assumes the reader is already familiar with some foundamental semiconductor knowledge!
Average customer rating:
- Still the Best Overview on Quantum Computing
- Complete, but sloppy
- Complete and didactical
- Good book
- An essential text
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Quantum Computation and Quantum Information
Michael A. Nielsen , and
Isaac L. Chuang
Manufacturer: Cambridge University Press
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Similar Items:
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Classical and Quantum Computation (Graduate Studies in Mathematics)
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Quest for the Quantum Computer
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The Physics of Quantum Information: Quantum Cryptography, Quantum Teleportation, Quantum Computation
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Problems And Solutions in Quantum Computing And Quantum Information
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An Introduction to Quantum Computing
ASIN: 0521635039 |
Book Description
In this first comprehensive introduction to the main ideas and techniques of quantum computation and information, Michael Nielsen and Isaac Chuang ask the question: What are the ultimate physical limits to computation and communication? They detail such remarkable effects as fast quantum algorithms, quantum teleportation, quantum cryptography and quantum error correction. A wealth of accompanying figures and exercises illustrate and develop the material in more depth. They describe what a quantum computer is, how it can be used to solve problems faster than familiar "classical" computers, and the real-world implementation of quantum computers. Their book concludes with an explanation of how quantum states can be used to perform remarkable feats of communication, and of how it is possible to protect quantum states against the effects of noise.
Customer Reviews:
Still the Best Overview on Quantum Computing.......2007-03-02
This is an excellent book about a topic which becomes more important
with each passing month. It is written at a graduate level, such that
you really need to have had a college-level quantum mechanics course,
or equivalent. Most of the book uses bracket notation.
Complete, but sloppy.......2007-02-08
This is absolutely the standard introductory text to quantum information and quantum computation. Nielsen and Chuang certainly covered all the basis, and tried to give a self contained book including many reviews of related topics in the appendices. The main complain about the book is that some times it is sloppy, making hard to grasp the concepts. In some parts of the book there are even grammatical errors. My advice, get it, read it, but be very careful.
Complete and didactical.......2007-01-03
It is a book for specialists. In order to fully appreciate the contents you should have a physics, maths or computation science diploma. It contains a good introduction on Quantum mechanics, but for people that have already assited an introductory course on the field. Concerning the main subject: quantum computation, this book is the most complete review of the field and also suitable for a course on QC.
Good book.......2006-03-25
The book is good and gives you a general view of quantum information and computation. However, the size of the book disencourages beginners to read it.
An essential text.......2005-06-17
Despite its age, I keep coming back to this text for the careful prose and knowledgeable authors; so much so that I am ordering the hardback edition, having worn out the binding of the paperback edition. It is both a book to learn from and one to refer to later. It will eventually be outdated, but I don't see this as having happened yet. Although a large book, it is not bulked out like some, containing a lot of useful and relevant material. Perhaps not the text for those setting out from a 'cold start', but then a great follow up to 'The Quest for Quantum Computing" by Julian Brown. Not overtly rigorous, which is to its credit, as the concepts remain clear as a result. Certainly an essential text, where the prose does not get in the way. A very readable book about a very exciting subject, that is sure to deliver to the determined reader.
Average customer rating:
- A Compendium of Knowledge about Sol Gel Science
|
Sol-Gel Science: The Physics and Chemistry of Sol-Gel Processing
C. Jeffrey Brinker , and
George W. Scherer
Manufacturer: Academic Press
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Similar Items:
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Sol-Gel Materials: Chemistry and Applications (Advanced Chemistry Texts)
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Introduction to Sol--Gel Processing (The International Series in Sol-Gel Processing: Technology & Applications)
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The Chemistry of Silica: Solubility, Polymerization, Colloid and Surface Properties and Biochemistry of Silica
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Nanochemistry: A Chemical Approach to Nanomaterials
ASIN: 0121349705 |
Book Description
Sol-Gel Science presents the physical and chemical principles of the sol-gel process at a level suitable for graduate students and practitioners in the field. This book defines sol-gel rather broadly as the preparation of ceramic materials by preparation of a sol, gelation of the sol, and removal of the solvent. The sol may be produced from inorganic or organic precursors (e.g., nitrates or alkoxides) and may consist of dense oxide particles of polymeric clusters. Brinker expands the definition of ceramics to include organically modified materials, often called ORMOSILs or CERAMERs. The emphasis of the author' treatment is on the science, rather than the technology, of sol-gel processing. Although a chapter on applications is included, more detailed discussion is available in proceedings of conferences and in the recent collection of articles, Sol-Gel Technology for thin films, Fibers, Preforms, Electronics, and Specialty Shapes (Noyes, Park Ridge, N.J., 1988), edited by professor Lisa Klein.
Customer Reviews:
A Compendium of Knowledge about Sol Gel Science.......2000-10-11
Perhaps it's trite to say this, but Brinker and Scherer's _Sol Gel Science_ is *the* indispensible desktop reference for the sol-gel chemist. Though now over a decade old, the topics covered (only a smattering of which are mentioned in the editorial review above) are so fundamental that it remains one of the most often cited sol-gel references, both in texts and refereed journal articles. The layout of the book takes the reader through the entire sol-gel formation process, from reaction to casting to drying, curing and other post-modificiations, with a chapter devoted to each step - permitting this book either to be read cover-to-cover (for the interested newcomer or as a text for a course in sol-gel science) or to be referenced as necessary by the more familiar reader.
C. Jeffrey Brinker, now affiliated with Sandia National Laboratories as well as the University of New Mexico, remains the preeminent researcher and one of the most-often cited authors in his field, continuing research on self-assembled nanostructures, porosity-tailored materials, organic-inorganic hybrids, and related topics.
George W. Scherer, professor in the Civil and Environmental Engineering Department of Princeton University, also maintains a professional involvement in sol-derived gels, glasses, and ceramics, among other areas of interest, and is the author of several patents, as well as innumerable scientific papers, in these fields.
Though more-recent texts may be more up-to-date in terms of research cited, especially areas pertinent to nanotechnology, this book's position as a compendium of knowledge in the field of sol-gel science has not diminished with age and is highly reccomended.
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- Introduction to Quantum Information Science (Oxford Graduate Texts)
- Introduction to Quantum Mechanics (2nd Edition)
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