Showing posts with label science. Show all posts
Showing posts with label science. Show all posts

2/21/2012

Optimizing Op Amp Performance Review

Optimizing Op Amp Performance
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This book is an excellent treatment of this subject that is intuitive and not overly theoretical. It draws together a lot of material available in magazines and on vendor websites, but not available in book format. The author starts with the traditional op amp symbol, and derives Black's classic feedback model for various configurations (inverting, non-inverting, etc) of the op amp. A generalized expression for the closed loop gain is eventually obtained where the numerator is the ideal closed loop gain, and the denominator contains the frequency response that can be analyzed with the aid of the Bode plot. Practical design issues are logically addressed using this simple formalism including bandwidth, phase compensation for input and output capacitances, power supply by-pass requirements, distortion, etc. Care is taken to indicate what conclusions apply to all op amp configurations, and which address specific design issues. As a writer, the author is very pointed in his approach and thorough with his analyses; and will not win any awards for fiction suited for a general audience. However, I highly recommend the book to anyone trying to learn how to use op amps in a systematic way.

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A new approach for maximizing op amp behavior in circuit designs- without extensive mathematical analysis This guide from one of the world's leading op amp designers takes you through the causes of op amp performance problems- such as oscillations, errors, bandwidth limitations, noise, and distortion - and shows you how to develop simple models and design equations that lead to optimal results. You'll find detailed solutions for feedback conditions; power supply bypass; phase compensation; reducing radiated interference; and measuring distortion.Combining intuitive and mathematical evaluations, this get-it-done tool packs varied examples that enable you to optimize a range of performance characteristics.

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2/19/2012

Structural Geology: An Introduction to Geometrical Techniques Review

Structural Geology: An Introduction to Geometrical Techniques
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As a student, this is one of the WORST books I have ever seen used in a college classroom: 1) There are huge math errors. 2) Examples are nothing like the problems. 3) The variables are often not defined. 4) The quailty of the binding is horrible. Mine fell apart after two weeks! 4) The verbiage is not clear. He doesn't say what he thinks he is saying.

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This combination of text and lab book presents an entirely different approach to structural geology. Designed for undergraduate laboratory classes, it provides a step-by-step guide for solving geometric problems arising from structural field observations. The book discusses both traditional methods and cutting-edge approaches, with emphasis given to graphical methods and visualization techniques that support students in tackling challenging two- and three-dimensional problems. Numerous exercises encourage practice in using the techniques, and demonstrate how field observations can be converted into useful information about geological structures and the processes responsible for creating them. This updated fourth edition incorporates new material on stress, deformation, strain and flow, and the underlying mathematics of the subject. With stereonet plots and solutions to the exercises available online at www.cambridge.org/ragan, this book is a key resource for undergraduates, advanced students and researchers wanting to improve their practical skills in structural geology.

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1/28/2012

Magnetic Current Review

Magnetic Current
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Mr. Leedskalnin's book is difficult to read, but one must consider that English was not his native tongue. According to those who knew him, he was very friendly and extremely intelligent, but also entirely secretive about certain things. For example, he claimed to know how the pyramids were built, and he also stated that he knew the secrets of anti-gravity. Of the latter, at least, he proved it by creating Coral Castle near Homestead, Florida -- in the process he managed to lift numerous up-to-30-ton blocks of coral WITHOUT MODERN MACHINERY. (Now that is a wonder.) Perhaps my fascination with this man colors my opinion of him, but I can overlook his misspelled words, et cetera, when I consider his intelligence. (In my own personal life, I happen to have a younger brother who is dyslexic and blind in one eye -- he can barely spell/write -- but he's also one of the most brilliant people I've ever known.)In any case, anyone thinking of reading or purchasing this book needs to prepare for its difficult style of wording. There will be a great deal of reading and re-reading, plus deciphering to be done.

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A writing based on the author's two years of experimentation with magnets at Rock Gate, which is seventeen miles southwest from Miami, Florida.

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What's Science Ever Done For Us: What the Simpsons Can Teach Us About Physics, Robots, Life, and the Universe Review

What's Science Ever Done For Us: What the Simpsons Can Teach Us About Physics, Robots, Life, and the Universe
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If you're a fan of The Simpsons, then you know that they've had plenty of episodes that involve fairly scientific topics and a few well-known guest stars from the scientific community. Paul Halpern digs a little deeper into these mysteries of science in the book What's Science Ever Done For Us: What the Simpsons Can Teach Us About Physics, Robots, Life, and the Universe. By the time you get done with the book, you'll be better edumacated about a lot of things, and you'll have an enjoyable time getting there...
Contents:
Part 1 - It's Alive!: The Simpson Gene; You Say Tomato, I Say Tomacco; Blinky, the Three-Eyed Fish; Burns's Radiant Glow; We All Live in a Cell-Sized Submarine; Lisa's Recipe for Life; Look Homer-Ward, Angel
Part 2 - Mechanical Plots: D'ohs ex Machina; Perpetual Commotion; Dude, I'm an Android; Rules for Robots; Chaos in Cartoonland; Fly in the Ointment
Part 3 - No Time to D'ohs: Clockstopping; A Toast to the Past; Frinking about the Future
Part 4 - Springfield, the Universe, and Beyond: Lisa's Scoping Skills; Diverting Rays; The Plunge Down Under; If Astrolabes Could Talk; Cometary Cowabunga; Homer's Space Odyssey; Could This Really Be the End?; Foolish Earthlings; Is the Universe a Donut?; The Third Dimension of Homer
Inconclusion: The Journey Continues
Acknowledgments; The Simpsons Movie Handy Science Checklist; Scientifically Relevant Episodes Discussed in This Book; Notes; Further Information; Index
I'll admit I was expecting far less from this book when I first heard of it. I've seen too many "intellectuals" dissect a cartoon or story and add layers of complexity and academic baggage to the point that they've created their own fantasy world about what things "really" mean. Fortunately, that doesn't happen here. Halpern treats the Simpsons series with respect in terms of enjoying the episodes and understanding that they are primarily entertainment. But he goes deeper into some of the episodes to examine the science behind the storyline. For instance, he discusses the "fact" that water drains counterclockwise in the Northern Hemisphere and clockwise in the Southern Hemisphere due to the Coriolis effect. This is tied back to an episode where Bart and Lisa were trying to prove that fact and ended up having to travel to Australia to avoid an international incident. By the time you're done with the chapter, you know exactly what the Coriolis effect is, and whether water really *does* behave that way. Or there's the discussion about perpetual motion machines and whether it would ever be possible to build one like Lisa did in one episode. Again, by the end of the chapter, you know why the laws of thermodynamics mean that it's impossible to do that. Add in a few guest appearance by people like Stephen Hawkings, and you end up with an entertaining read about solid science, along with a few "I remember that episode!" moments...
This is a definite "should read" for Simpson fans, and perhaps a really good resource for teachers who are trying to hook younger minds into the realities of science...


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1/21/2012

The Cell Cycle: An Introduction Review

The Cell Cycle: An Introduction
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Really, you need to read this book. Nowadays nobody can ignore the cell cycle since everything in biology either feeds into the cell cycle, is controlled by the cell cycle, or, in most cases, both. Because the cell cycle is so important, there has been a flood of information about its molecular components, but what this book does is take all that information and place it in context by laying out the overall computational logic of cell cycle control. So, although the book does a great job summarizing the extant data at the time of its writing (which is now a little bit out of date unfortunately), its real value is in providing the conceptual hooks onto which the data can be hung. In this regard, it is still just as effective as it was when it first came out in print, and it is still highly recommended for anyone interested in this subject.

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In the last decade there has been a revolution in our comprehension of how cells grow and divide.Results from experiments on yeast, embryos, and cultured mammalian cells have unified seemingly disparate viewpoints into a single set of principles for normal cellular reproduction in plants, animals and bacteria.Written by two leading participants in that revolution, The Cell Cycle provides the first thorough, authoritative account of the new philosophy of normal cellular reproduction and how it emerged.It is a vivid portrayal of the molecular logic of the cell: how the cell engine induces DNA replication and chromosome replication; how the integrity of genetic information is preserved; and how cell size and environmental signals regulate the cycle of growth and division.By describing important breakthroughs in their historical and experimental context, The Cell Cycle traces the development of the new vision of cell biology and shows its relevance to other areas of modern biology. It is the ideal introduction to the current understanding of cell growth and division for advanced undergraduate and graduate level cell biology courses.

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1/14/2012

Planet Earth: As You've Never Seen It Before Review

Planet Earth: As You've Never Seen It Before
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Most of the books images have been poorly resized upwards. Almost every image is marred by pixelization -- Zebra stripes have jagged stairsteps. While original digital footage was shot with enough resolution for HD DVD, those screen captures do not have enough detail for good prints.

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1/06/2012

From Tadpole to Frog (Let's-Read-and-Find-Out Science 1) Review

From Tadpole to Frog (Let's-Read-and-Find-Out Science 1)
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This is a nice book with attractive artwork that describes the two-year life cycle of the American Bullfrog. As a Stage One book "From Tadpole to Frog" uses simple sentences and concepts that are appropriate for toddlers, preschoolers, and young children up to about 8 or 9 years of age.
Besides a description of the Bullfrog lifecycle, and the 'where Bullfrogs can be found' map, there are pictures with brief descriptions of 5 other frogs, including the Leopard, Pickerel, Wood, Spring Peeper, and Gray Tree frogs.
Four Stars. Good artwork on every page. The color runs from edge to edge. Okay Read-aloud. The Bullfrog is interesting as even the tadpoles hibernate for one year. Nothing objectionable in my opinion; although I should note above that there is a brief mention of reproduction. [I mention this as some parents have concerns and have told me they appreciate such notes.] The book, in any case, says the following about frog reproduction:
At night you hear "Ba-ra-rooom... ba-ra-
room... ba-ra-rooom...". The males are calling
to their mates.
The female hear the call.
The male hugs his mate. He fertilizes her eggs as
she lays them in the water. Thousands of soft
jelly-covered eggs cling together in the cool water.
The artwork shows the frogs hugging, and neither art nor wordage was inappropriate or graphic, in my opinion. Certainly my children didn't think anything of it.
The AR reading level is given as 1.6 which means this is a book for a child in the second half of the first grade. While professionally assessed, this mom thinks quite a few first graders will need some help because of the vocabulary. More difficult words include: hibernate, thousands, whistle, creatures, stretching, fertilizes, speckled, and capture. Words they might not be familiar with are: mate, female, male, breathe, gills, and cling.

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Wendy Pfeffer describes the amazing metamorphosis from tiny, jellylike egg, to little fishy tadpole, to great big bullfrog. Holly Keller has created the archetypal frog pond and we see it through the seasons as the tadpoles grow legs and lungs and eventually hop onto land: bullfrogs at last. "Well-designed ink drawings washed with soft-toned watercolors stretch across the double-page spreads, showing the action above and below water level. . . .an attractive, general introduction."-BL. 1994 "Pick of the Lists" (ABA)Best Children's Science Books, 1994 (Science Books and Films)

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1/01/2012

Permanent Magnet Materials and their Application Review

Permanent Magnet Materials and their Application
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I have read this book, not a bad book, there are couple of good chapters, the ones for thermenal stability,magnetic circuits and applications.but I do recommend "Introduction to magnetism and magnetic material" as starter book because this book deals with the theory behind magnets applications. So once you read this book, your able to understand campbell's one.


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This book is a comprehensive design text on permanent magnets and their applications. The author begins with a brief overview of the theory of magnetism and explains the behavior of the different classes of permanent magnets and the various production processes that lead to quite diverse material characteristics. The core of the book is a detailed treatment of the methods used to design permanent magnets, including assessments of the changes they experience under practical operating conditions.The volume also describes modern analytical techniques including the finite element method, with reference to the accurate simulation of permanent magnetic materials. Electrical engineers, condensed matter physicists and materials scientists will find this book useful.

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12/31/2011

Physical Geography: A Self-Teaching Guide (Wiley Self-Teaching Guides) Review

Physical Geography: A Self-Teaching Guide (Wiley Self-Teaching Guides)
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I bought the Kindle version of this book and the first thing I noticed is that the author book assumes an American readership and skews its examples accordingly. So if you're curious about Australia's weather patterns, for example, there's not much here.
For North Americans, this book is a good introduction to physical geography for kids about middle school age and up (Rose the Bat Lady notwithstanding, a kid doesn't have to be a super genius to absorb the material). The information given is clearly explained by a writer who respects young people's intelligence.
However, it does not have the sorts of colorful, super-entertaining illustrations that today's kids expect. Instead, it offers very simple black & white line drawings of the type one expects to find in much older books. So four stars instead of five because of visuals.
On the other hand, perhaps parents will be encouraged to do supplemental activities such as breaking out the family globe, a flashlight and a bowl of popcorn and demonstrating for their kids the basics of rotation, tilt, revolution and their effects on the sun's illumination of various points on the earth on various days of the year. I guarantee an evening spent this way would not only be great for the whole family but far more memorable than the hippest illustrations ever could be.

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Learn physical geography at your own paceWhat is atmospheric pressure?How does latitude indicate the type of climate a specific place will have?Where are volcanic eruptions or strong earthquakes most likely to occur?With Physical Geography: A Self-Teaching Guide, you’ll discover the answers to these questions and many more about the basics of how our planet operates.Veteran geography teacher Michael Craghan takes you on a guided tour of Earth’s surface, explaining our planet’s systems and cycles and their complex interactions step by step.From seasonal changes to coastal processes, from effluvial basins to deep sea fissures, Craghan puts the emphasis on comprehension of the topics.He also includes more than 100 specially commissioned illustrations and 50 photographs to help clarify difficult concepts.The clearly structured format of Physical Geography makes it fully accessible, providing an easily understood, comprehensive overview for everyone from the student to the amateur geographer to the hobbyist.Like all Self-Teaching Guides, Physical Geography allows you to build gradually on what you have learned–at your own pace.Questions and self-tests reinforce the information in each chapter and allow you to skip ahead or focus on specific areas of concern.Packed with useful, up-to-date information, this clear, concise volume is a valuable learning tool and reference source for anyone who wants to improve his or her understanding of physical geography.

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12/08/2011

Tools of Navigation: A Kid's Guide to the History & Science of Finding Your Way (Tools of Discovery series) Review

Tools of Navigation: A Kid's Guide to the History and Science of Finding Your Way (Tools of Discovery series)
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This book is titled "Tools of Navigation, a Kid's Guide to the History & Science of Finding Your Way," but this 45-year-old reviewer found it fascinating. I've always loved reading books about people who venture to the North Pole, through the Amazon Rainforest, or across the Sahara Desert, but always wondered how they did it without getting hopelessly lost. Author Rachel Dickinson sheds light on this mystery.
The book explains navigation from the Ice Age to the present, and also includes info on ancient navigators such as Marco Polo, Lewis & Clark, Robert Peary, and Ferdinand Magellan. It's very easy to understand and includes great photos and lots of fun activities, such as: how to make your own compass, go on a treasure hunt, work with topographic maps, and make a sky chart that maps out constellations.
Rachel Dickinson does a wonderful job of explaining navigation and history. It's a great book for parents to share with their children or teachers to share with their classroom. But it's also a fascinating read for anyone interested in navigation, history, and early explorers.

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12/04/2011

Physics by Inquiry: An Introduction to Physics and the Physical Sciences, Vol. 1 (Volume 1) Review

Physics by Inquiry: An Introduction to Physics and the Physical Sciences, Vol. 1 (Volume 1)
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This book uses principles developled by the University of Washington Physics Education Group. The inquiry method frees the instructor from the board, and asks students to learn on their own by facing their own misconceptions.

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These volumes consist of a set of interactive based modules that offer a step-by-step introduction to physics and the physical sciences.Through an in-depth study of a few fundamental concepts, readers develop critical scientific reasoning skills.Volume 1 introduces basic physical ideas and includes topics which represent the essential background for the study of physical sciences.Volume 2 extends coverage of several subjects treated in the first volume and introduces additional important topics.

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11/23/2011

The Inventions Researches And Writings of Nikola Tesla: With Special Reference To His Work In Polyphase Currents And High Potential Lighting Review

The Inventions Researches And Writings of Nikola Tesla: With Special Reference To His Work In Polyphase Currents And High Potential Lighting
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This book is the compilation of Lectures given by Tesla in the late 1880's where he explains basically everything he has done so far, including real practical advice on how to build motors, coils, etc. Get it and ask yourself howcome he is rarely mentioned in today's textbooks.

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The Inventions Researches And Writings of Nikola Tesla With Special Reference To His Work In Polyphase Currents And High Potential Lighting by Thomas Commerford Martin

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11/22/2011

On the Revolutions of Heavenly Spheres (Great Minds Series) Review

On the Revolutions of Heavenly Spheres (Great Minds Series)
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OK, first of all, "GangstaLawya" seems to not be taking into account the fine work of Kepler, Newton, and Einstein when he suggests that we "remain agnostic" on the issue of heliocentrism. True, Copernicus himself does not excactly refute Ptolemy here (he actually was more worried about how other astronomers and Protestant theologians would react to his heliocentric system than how the Catholic church would see it... and his model wasn't fully accepted until over a hundred years after his death), but this model was later augmented by Kepler and Newton to the point where it does work better than Ptolemy's. And with all due respect, the Ptolmaic system is extremely convoluted, needlessly complicated, and downright ugly at times... so even if there's a simpler way of looking at things that works just as well, that's still a conceptial improvement. Occam's razor, y'know?
But I digress. As with most of my reviews of books like this, my concern isn't necessarily the actual book (which is usually self-evidently worthwhile), but with the presentation. I must say that it's a little awkward to see Stephen Hawking's name appear on the cover in larger type than Copernicus' and not get anything more than a very short introduction by him that doesn't say very much. In fact, there is not very much of a difference between this edition and the one published by Prometheus Books; the text is exactly the same and contains all the same diagrams. The cover is flashier (and says "Stephen Hawking!") and the type is cleaner. That's it. Those are the only real differences. In fact, the only reason I can see for this edition existing is Running Press (and Stephen Hawking) making a few bucks.
Despite all this, there isn't really anything here that detracts from the work. So basically, you can buy this copy or the Prometheus Books edtion and it won't matter; you'll get pretty much the same thing and pay pretty much the same price either way. I'll leave it up to you whether you want the flashy cover (complete with Stephen Hawking's name on it) or the plain one because that's really about as deep as the choice goes.

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The Ptolemaic system of the universe, with the earth at the centre, had held sway since antiquity as authoritative in philosophy, science, and church teaching. Following his observations of the heavenly bodies, Nicolaus Copernicus (1473-1543) abandoned the geocentric system for a heliocentric model, with the sun at the centre. His remarkable work, "On the Revolutions of Heavenly Spheres", stands as one of the greatest intellectual revolutions of all time, and profoundly influenced, among others, Galileo and Sir Isaac Newton.

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11/20/2011

Janice VanCleave's Magnets: Mind-boggling Experiments You Can Turn Into Science Fair Projects Review

Janice VanCleave's Magnets: Mind-boggling Experiments You Can Turn Into Science Fair Projects
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My 9 year old grandson loves the book, and is doing a science project for the first time this year. He plays with magnets all the time and is fasinated by them, hence they will be the main focus for his project. Thank you Amazon for the discounted price and the truth in telling that the book was in good condition and it was. I'm sure his project will be a success and he's also learning new things about magnets.

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The perfect science fair idea books… Spectacular Science Projects Janice VanCleave’s MagnetsHow does a compass work?What is a magnetic field?How can you make a magnet with electricity?Janice VanCleave’s Magnets includes 20 simple and fun experiments that allow you to discover the answers to these and other fascinating questions about magnets, plus dozens of additional suggestions for developing your own science fair projects. Learn about magnetic poles using a bar magnet, paper, and string; about magnetic force fields with a compass, a pencil, and a sheet of paper; and much more. All experiments use inexpensive household materials and involve a minimum of preparation and clean up. Children ages 8–12 Also available in the Spectacular Science Projects Series: Janice VanCleave’s Animals Janice VanCleave’s Earthquakes Janice VanCleave’s Electricity Janice VanCleave’s Gravity Janice VanCleave’s Machines Janice VanCleave’s Molecules Janice VanCleave’s Microscopes and Magnifying Lenses Janice VanCleave’s Volcanoes Janice VanCleave’s Weather

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10/21/2011

Poles Apart: The Great Climate Change Debate Review

Poles Apart: The Great Climate Change Debate
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The effort by Gareth Morgan is relatively unique in the literature. He is a professional investor with the resources to actually obtain scientific advice from both sides, and he presents an entertaining explanation of the two "poles" of the anthropogenic global warming debate. Showing on the one hand, why there is trouble with the hockey stick and on the other, why there is no significance to the order in which warming and CO2 occur at the end of an ice-age. He balances the argument. In keeping with the author's apparent wishes, I will not reveal the conclusion he reaches.
I do however, commend him on the accuracy and simplicity with which he explains the most complex public policy problem in the history of the human species.
One point he makes which can be (I think) revealed is that the IPCC reports are not well written in terms of the average reader, and that there is no media entity or mechanism to make it accessible to them. His comparison is the Latin of the old Catholic church, spoken with the back turned to the congregation. He explains well.


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Gareth Morgan couldn't decide whether he believed in climate change or not, so he hired the best international scientists to answer his questions and these are his findings. Combined with anecdotes from his own recent trips to Antarctica and the Arctic this is something completely unique in books about climate change - somebody who has approached the topic with an open mind, somebody who has the resources to explore such a topic and somebody who has personally investigated all of the issues. So what was his conclusion? Read the book to find out. In conjunction with excellent researcher and writer Dr John McCrystal, this is an accessible and fascinating exploration of one of the biggest topics of the 21st century. This book defines climate change, explains the science of taking the earth's temperature, looks at the respective cases of the alarmists and the sceptics, examines the anecdotal evidence and the politics of this dialogue, and then comes to a conclusion based on all this research.

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10/20/2011

Wideband Amplifiers Review

Wideband Amplifiers
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Finding a book that addresses a topic from the famous MIT Radiation Laboratory Series feels almost like encountering a new version of the bible. The RL Series has provided firm anchors to analog circuit designers throughout the past six decades and represents as such an almost untouchable set of classic texts. Yet, it was high time for comprehensive updates of these texts to see the light of day. For example, the Valley-Wallman's "Vacuum Tube Amplifiers" has first appeared in 1948. Since that time the transistor has been invented, the computers have become an important engineer's design tool and the engineering practice has resulted in many new insights into the field of electronic amplifiers. Authors Peter Staric and Erik Margan have successfully addressed this challenge with their book "Wideband Amplifiers" published by "2006 Springer" of Netherlands.
Just like the Radiation Lab Series, the content of "Wideband Amplifiers" rests on firm understanding of theoretical underpinnings of topics addressed. And just like the former, the "Wideband Amplifiers" is enriched with engineering guidance, stemming from unmistakable hands-on experience. But what gives this book its special vital value is its match to the world of semiconductors and computers.
As the title "Wideband Amplifiers" suggests, the authors have paid particular attention to bandwidth extending techniques. The inductive peaking has received a thorough analysis, starting with a clever introduction of this powerful technique. The many variations of Bessel, Butterworth and real pole circuits are richly illustrated with time and frequency responses, providing the designer with an important warning to consider both while pursuing either.
The same diagrams display also the uncompensated responses, giving the designer a measure of benefit extracted from increased circuit complexity. Each diagram is accompanied by the actual circuit schematics that would produce the relevant responses. The authors have gone even a step further and have provided the methods for calculation and design of cylindrical T-coils and their coupling coefficients. To the practicing engineer this will be an additional welcome shortcut on the path from theory to implementation. To the analytically minded the mathematical derivations of all responses will open the path to creative experimentation before committing a design to implementation.
The authors have taken a noncommittal stand with respect to frequency and time domain approaches of circuit design. As we have hinted earlier this forces the designer who pursues a response in one domain to pay attention also to the behaviour in the other domain. The Fourier and Laplace transforms, tying together the two domains have received an extravagant treatment in the very first chapter of this book. It is likely the most complete set of analytical tools to be found in a non-mathematics book.
Rather than offloading the forward and inverse transformations to the tables as is commonly done, the authors have not shied away from entering the slippery field of contour integration, integration around poles and other complex mathematical constructs underlying the inverse transformations. Yet, they have tied all these mathematical abstractions to the electrical circuitry and have brought them down to earth with many beautiful illustrations. If one wanted desperately to come up with a missing mathematical tool it would be the implicit convolution. By allowing the transfer of unspecified boundary conditions between domains the implicit convolution greatly expands the usability of transforms. Unfortunately, this powerful technique is not widely publicized.
Having obviously enjoyed the beauty of exact mathematical predictability of passive peaking circuit behaviour, the authors bid farewell to exact calculations in the third chapter. Here the amplification part of the book's title joins the wideband part, which was so thoroughly addressed in the second chapter. The semiconductor cascode amplification and the JFET source follower receive the lion's share of the attention. Special needs of oscilloscope amplifiers are addressed and again reveal the hands-on familiarity with the subject. The knowledge acquired in the second chapter is here well integrated with the active elements and is thoroughly analyzed from the viewpoint of the ultimate goal, i.e., wideband amplification.
In the fourth chapter new options offered by multi-stage amplifiers are addressed. The possibility of cascading unequal stages opens a whole new spectrum of possibilities. The predictability of performance by analytical means is again available and the authors make ample use of it. A systematic positioning of Butterworth and Bessel poles dependent on the number of amplification stages takes up much of the chapter's allocated space. Unlike all known classical texts of this genre, this book provides tables of Butterworth and Bessel poles up to the 10-th order. As was the case in earlier chapters, the authors again carefully allocated equal space to frequency and time domain performance questions.
Chapter 5 starts with an implementation of a seven pole two stage amplifier whose bandwidth has been inductively peaked and optimized for time response. This amplifier and most of the following circuits addressed in this chapter should be an oscilloscope designer's wish-come-true. It would include the design of an input attenuator without the bothersome "hook-effect" and a delightful transition from discrete amplifier implementations to integrated versions. Modern operational amplifiers and a variety of integrated components are used in powerful combinations to meet the needs of an oscilloscope or a number of other electronic test instruments.. Issues like linearity, slew rate, overdrive recovery and even error corrections are addressed in this chapter richly endowed with ideas and circuits.
In the sixth chapter the reader is led from the classical mathematics of linear, time invariant, causal systems to its digital equivalent. Again the frequency and time domains receive full attention but this time within the Matlab environment. As the filtered amplification ideas are being developed they are examined with this powerful digital tool. At the same time the readers are familiarized with ways of casting their own ideas into the language that the Matlab Signal Processing Toolbox can understand.
An important contribution of this chapter is a proposed method, which overcomes the known divergent responses of Fourier transform to temporal step inputs. In the classical analog environment of previous chapters this problem was overcome by the use of Laplace transform. The method developed here is applicable to sampled data only. It is successfully used throughout the chapter for evaluation of time responses obtained from sampled spectral data by means of the Fast Fourier Transform algorithm. A thorough analysis of errors stemming from the digital nature of signals and from their digital processing is another indicator of the hands-on experience of the authors.
Chapter seven is an implementation of the groundwork developed in chapter 6. The nitty-gritty question of how to get from calculated poles to resistors, capacitors and inductors is addressed here. A rarely encountered analysis of a cascade of an analog and a digital filter is also found in this chapter. Even the complex task of overall optimization of such structures is discussed.
Among other issues addressed, which testify to a thorough familiarity of the authors with the gaps between theoretical and actual performance, of even the best designs, is the question of aliasing. The spurious responses arising from aliasing are vividly illustrated in both time and frequency domain and methods for combating them with windowing are discussed. A proof of authors' successful struggle with aliasing in general, is visible from the beautiful graphs that make the perusal of this book a pleasant experience. But its value to a designer of wide band amplifiers, striving for ultimate performance is unprecedented.
Zvonko Fazarinc


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There are many books discussing electronic circuit design which include a chapter or two dedicated to wideband and high-speed circuits and instrumentation. In most of those books the way of achieving a high bandwidth relies almost exclusively on the selection of semiconductor devices fast enough to do the job. Only a few of them go deep enough into specific details useful for starting the high-speed circuit design from scratch; fewer still dedicate enough space to identify the causes for bandwidth limitation, let alone the remedies and solutions possible with careful and systematic consideration of active and passive component interactions and specific circuit topology selections.There are also many books discussing circuit analysis, modeling and performance optimization strategies; almost none, however, offers also the complete introduction to mathematical procedures required for a successful design, particularly if time-domain or transient performance is of prime importance.Wideband Amplifiers attempts to cover both of these requirements, starting from the basics of mathematical procedures and circuit analysis but also offering the more advanced topics of system optimization and synthesis, along with the complete mathematical apparatus required. We have tried to show the circuit examples in such a way that the main principles for achieving high bandwidth are clearly exposed, independently of the actual device technology used in the circuit realization. At the same time we were striving not to loose sight of the everyday needs of a circuit design engineer, so we have intentionally limited the contents of mathematics to the necessary minimum. While some of the derivations require a degree of previous mathematical knowledge, we have taken care to include the trivial steps in order to help a less experienced reader to follow the subject easily. For those who want answers more immediately, the computer routines on the accompaining CD will be of help.In this way we hope that Wideband Amplifiers will have a more lasting value, both as a learning guide and as a reference design manual.

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