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
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History: Fiction or Science? (Chronology, No. 1)
Anatoly Fomenko
Manufacturer: Mithec
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Binding: Paperback
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They Cast No Shadows: A Collection of Essays on the Illuminati, Revisionist History, and Suppressed Technologies
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.
Average customer rating:
- Excellent translation with helpful apparatus
- Is Newton come on!
- An Engrossing and Time Consuming Masterpiece of Science and Literature
- I can't believe people still believe this stuff
- Wonderful overview, somewhat overwhelming.
|
The Principia : Mathematical Principles of Natural Philosophy
Isaac Newton
Manufacturer: University of California Press
ProductGroup: Book
Binding: Paperback
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ASIN: 0520088174 |
Book Description
In his monumental 1687 work Philosophiae Naturalis Principia Mathematica, known familiarly as the Principia, Isaac Newton laid out in mathematical terms the principles of time, force, and motion that have guided the development of modern physical science. Even after more than three centuries and the revolutions of Einsteinian relativity and quantum mechanics, Newtonian physics continues to account for many of the phenomena of the observed world, and Newtonian celestial dynamics is used to determine the orbits of our space vehicles.
This completely new translation, the first in 270 years, is based on the third (1726) edition, the final revised version approved by Newton; it includes extracts from the earlier editions, corrects errors found in earlier versions, and replaces archaic English with contemporary prose and up-to-date mathematical forms.
Newton's principles describe acceleration, deceleration, and inertial movement; fluid dynamics; and the motions of the earth, moon, planets, and comets. A great work in itself, the Principia also revolutionized the methods of scientific investigation. It set forth the fundamental three laws of motion and the law of universal gravity, the physical principles that account for the Copernican system of the world as emended by Kepler, thus effectively ending controversy concerning the Copernican planetary system.
The illuminating Guide to the Principia by I. Bernard Cohen, along with his and Anne Whitman's translation, will make this preeminent work truly accessible for today's scientists, scholars, and students.
Customer Reviews:
Excellent translation with helpful apparatus.......2007-06-11
I am writing my dissertation on Newton and have found this translation incredibly helpful and surprisingly readable.
The Principia is one of the most difficult and inaccessible books ever written -- so much so, in fact that even John Locke (himself a pretty smart guy) had to ask Christian Huygens to explain much of it to him. This difficulty was intentional, because Newton did not want people who only understood math a little to try and undermine his arguments. For this reason, he rewrote book three so that only those who had read and understood book 1 could understand its concepts.
People laugh when I tell then that I own a book with a three hundred page introduction, but it's a book that needs a three hundred page intro. In their intro, Cohen and whitman describe the history of the principia, its structure, an explanation of where prior translations have fallen short, and -- most importantly -- note which of the Principia's sections have been most significant during and after Newton's time. This is helpful so that when you get to each section, you are more likely to notice which elements may have seemed most controversial, where he is taking down Descartes' vortices, etc. I'm not saying I agree 100% with cohen and whitman on all of their points, but they have produced a work that does not simply translate the book; it also shares the writers' substantial knowledge about the principia.
This is an essential and monumental translation. If you are at all interested in early modern science, you must own it.
Is Newton come on!.......2006-08-10
What I have to say is Newton.... What else are you lookin for in a Physics book. Ohh yeah the only problem it has that its size is such a college book(huge), and it is not hard cover.
An Engrossing and Time Consuming Masterpiece of Science and Literature.......2005-09-22
Principia explains with great detail some elements of Eucledian geometry, Calculus, Fluid mechanics, Three laws of Gravity and The Method of the Universe. Newtons three hundred year old advice remains true today to read Book One and Three while skipping Book Two altogether. I can honestly say that subject is not too difficult but is guilty of being well conceived but poorly worded. The latter was Newtons own intention to make its reading very exclusive and making him less vunerable to his contemporary critiques. This version has the diagrams illustrated on multiple pages for each Scholium to avoid the constant turning of its pages. I advice a slow read of Book 1 and 3. The last Scholium of Book 3 is the best discussion as to the existance of God that I have read. Long live the spirits of Shakespeare, Newton, Vermeer and Beethoven.
I can't believe people still believe this stuff.......2005-09-20
The Principia is the basis for much of modern science. It is swallowed hook, line and sinker by mathematicians and people in physics as a 'holy grail.' It is a continuation of very old fashioned thinking, hooked on 'cause and effect' relationships, Aristotelian in nature. One would think that modern science could see through this veil of antiquity, but seemingly has not yet had the courage to do so.
It is essential reading, however, so see how far 'science' has not moved for nearly 400 years.
This particular translation is of interest in that half of the book tries to explain and support the original text. Bit too hard of a sell to justify Newton's arguments. Again, it is a must-read for anyone seeking to understand the flaws of modern 'science.'
Wonderful overview, somewhat overwhelming........2004-09-07
This is a wonderful reference, but frankly, it was overwhelming for me. Let's just say that while the first two sections of this book were clear, informative, meticulously and thoroughly footnoted and annotated, the last section-- the actual translation-- proved beyond my abilities. I'd HIGHLY recommend a college-level geometry course before attempting to read the actual translation of Newton's revolutionary work.
Frankly, the combination of archaic verbiage (Cohen kept a number of obsolescent terms in translating from the original Latin), combined with a predominately narrative style (reading in an entire paragraph what can in modern mathematical symbology be articulated in a single line) combined with my lack of working analytic geometry enabled me to follow this seminal work conceptually, but not in detail. Other reviwers have suggested that a working knowledge of calculus and Newtonian physics is required. I disagree. To follow Newton's proofs in detail, it is Euclidean geometry that is required. Newton's Principia CONCEPTUALLY utilizes calculus, but the proofs themselves are Euclidean with the concept of "infinitisimally small" added to the equation. I have single- and multi-variable calculus, linear algebra, differential equations (first-, second-order, and partial), and graduate-level statistics under my belt. Junior high school geometry is insufficient to understand his work. So far, I am studying tensors, differential geometry/exterior calculus with respect to gravitation physics without too much difficuly. Geometry!
Otherwise, this book was wonderful. Section One is a thoroughly researched historical background. Social setting, scientific thought at the time, the controversies of the times, historical perspective, insights into Newton himself. Wonderfully referenced and annotated.
Section Two is a clear "How to Read" section-- discussing section by section of the Principia what the main concepts and issues are, even critiquing Newton's flaws and obvious attempts to fill in gaps or alter data when existing data were insufficient to his theories! Cohen even guides us step-by-step through some of the more important proofs in the Principia-- proofs that for the most part I followed, except for certain geometric assumptions that I had to assume were true.
My fascination has always been relativity... which I am working on understanding now. When finished, I may read a college-level text in analytic geometry, then come back to this. But I was impressed by the sheer breadth of conceptual material Newton covered. Certainly entitling his last book of The Principia "The System of the World" was justified.
Amazon.com
Richard Feynman, the rock star of theoretical physics, has left an image that belies his nerdy side. Not many bongo-playing surfer beatniks would have spent hours of their spare time proving Newton's law of elliptical planetary motion using only plane geometry. But Feynman's Lost Lecture: The Motion of Planets Around the Sun shows that the great man did just that. Originally delivered to an introductory physics class at Caltech in 1963, this 76-minute CD and book set contains everything the math-savvy listener needs to savor the pleasures of applied math. Caltech physicist David L. Goodstein and archivist Judith R. Goodstein found the notes and tape amid another professor's papers and set to work making sense of them; unfortunately, photographs of the blackboard drawings didn't survive. The book briefly covers their find and recovery work, then presents the proof as reconstructed--crucial reading if one is to follow the lecture. There's nothing easy about it, as Feynman acknowledges in the lecture:
I am going to give what I will call an elementary demonstration. "Elementary" means that very little is required to know ahead of time in order to understand it, except to have an infinite amount of intelligence.
He means, instead, that he is strictly using geometrical methods to reach his destination, which explains why it was so difficult to reconstruct without his diagrams. His charming Brooklyn accent and good humor show through in this lecture, even if the material is quite a bit drier than his fans might expect. Still, those interested in adding a new dimension to their understanding of this brilliant scientist--and those with a deep interest in Newtonian physics--will find The Motion of Planets Around the Sun a rare and unexpected treat. --Rob Lightner
Book Description
Rescued from obscurity, Feynman's Lost Lecture is a blessing for all Feynman followers. Most know Richard Feynman for the hilarious anecdotes and exploits in his best-selling books "Surely You're Joking, Mr. Feynman!" and "What Do You Care What Other People Think?" But not always obvious in those stories was his brilliance as a pure scientist--one of the century's greatest physicists. With this book and CD, we hear the voice of the great Feynman in all his ingenuity, insight, and acumen for argument. This breathtaking lecture--"The Motion of the Planets Around the Sun"--uses nothing more advanced than high-school geometry to explain why the planets orbit the sun elliptically rather than in perfect circles, and conclusively demonstrates the astonishing fact that has mystified and intrigued thinkers since Newton: Nature obeys mathematics.
David and Judith Goodstein give us a beautifully written short memoir of life with Feynman, provide meticulous commentary on the lecture itself, and relate the exciting story of their effort to chase down one of Feynman's most original and scintillating lectures. David and Judith Goodstein live in Pasadena, California.
Customer Reviews:
If you are a Feynman fan.......2007-09-04
This is a lot of fun -- if. If you are pretty good at mathematical games and have a love for all things Feynman. What makes it work is the CD with Feynman giving the lecture. He goes at the speed of light, but he is always amazing, even when you have no idea what he just said! I can't imagine what it was like for the young folks trying to make sense out of what was going on. But, I bet he inspired them for the rest of their careers. He still does that to people today. If you want a sample of the Feynman magic this is a tough place to start. But do find a way to start.
Feynman's proof of the law of ellipses.......2007-02-04
First we see that planets sweep out equal areas in equal times, following Newton's easy proof. Now to prove that planets move in ellipses. Cut the orbit into infinitesimal, equiangular pieces (as seen from the sun). Each little piece of the orbit corresponds to the velocity vector at that point. Draw a velocity diagram by moving all of these velocity vectors so that they have a common origin point. Obviously, as we move around the orbit, the velocity vector will make one revolution around the origin. In fact, it will trace out a circle, as we shall now prove. The orbit is cut into infinitesimal triangles with equal angles at the sun, so clearly these triangles are similar with a scaling factor r, i.e. an area scaling factor r^2. But time is the same as area, so time also varies as r^2. The change in velocity in one of these pieces is force*time=(1/r^2)*(r^2)=independent of r, so the dv steps in the velocity diagram are all of equal size, and because of the equiangular division they all make equal angles with each other (dv parallel to PS), so the velocity vector does indeed trace out a circle, and the equiangular division of the orbit as seen from the sun translates to an equiangular division of this circle as seen from its center. Of course, the center of the circle is not the origin of the velocity vectors; in particular, the velocity vector going through the center of the circle is the longest velocity vector, so it corresponds to the position on the orbit closest to the sun (as is obvious by the law of equal areas). If we turn the orbit diagram so that this position is straight to the right of the sun, then the longest arrow in the velocity diagram points straight up, since the velocity vector drawn in the orbit diagram will of course be parallel to the tangent to the orbit. When we have advanced a given angle beyond this starting point on the orbit (as seen from the sun), the corresponding velocity vector (i.e. the tangent to the orbit at this point) is found by advancing the same angle in the velocity diagram (as seen from the center of the circle) and connecting this boundary point with the origin of the velocity vectors, and conversely. So the velocity diagram contains complete information about the tangents of the orbit, so it contains complete information about the orbit up to scaling. So the problem becomes: for any velocity diagram, to recreate the orbit. To do this we turn the velocity diagram 90 degrees to the right. To recreate the orbit we must now find a curve that is always perpendicular to the velocity vectors. This can be done as follows. For any point p on the circumference of the velocity diagram circle, draw the line connecting it to the origin O of the velocity vectors and the line connecting it to the center C of the circle. Mark the point P where the perpendicular bisector of Op cuts Cp as a point on the orbit. Now we prove that the orbit generated in this way, as p moves around the circle, is an ellipse (we assume O to be inside the circle; if it was on the boundary the orbit would be a parabola, etc.). The perpendicular bisector cuts the triangle OPp into congruent halves (SAS), making OP=Pp, so CP+OP=CP+Pp=radius of the circle=independent of p, so P traces out an ellipse with foci C and O, and the perpendicular bisector is tangent to this ellipse (because all its other points are outside of the ellipse because they have greater sum of distances to the foci), as required. QED.
Lucid explanation of Feynman's proof of the law of ellipses.......2003-09-11
The book first walks you through the works of Copernicus, Galileo, Brahe and Kepler. Then it gives a brief account of Feynman's life and his work. Then, through numerous diagrams, the authors clearly explain Feynman's ingenious proof of the law of ellipses. Finally, the book presents Feynman's lecture "The Motion of Planets Around the Sun".
It is amazing how Feynman, starting on the lines of Newton, and then not being able to follow Newton's reasoning, devised a different but elegant proof of the law of ellipses.
An Entertaining And Captivating Lecture.......2003-04-04
This Review refers to the paperback edition of Feynman's Lost Lecture: The Motion of Planets Around the Sun with audio CD.
The title of Goodstein's book, Feynman's Lost Lecture, may be a bit misleading in terms of the overall content. The book is, in truth, mainly an explanation of the elliptic patterns performed by the planets, among other things, that an unpublished Feynman lecture originally referred to (although the lecture is included in text and on CD, the lecture is only a fraction of the overall book). Goodstein provides a geometrical means of explaining elliptical patterns that even a non-physicist will find easily comprehensible, especially considering the frequency of companion diagrams. The book also includes a rather unique introduction providing a brief biography of Feynman along with the author's personal experiences related to the well-known physicist. An unexpected, but greatly appreciated, addition is Feynman's original notes regarding his lecture contained in the back of the book.
Feynman's Lost Lecture details how to use geometric proofs to find answers to problems such as the speed of a planet when in motion around the sun and how to prove geometrically that an object is an ellipse. The author properly explains and demonstrates these concepts throughout the book via written and visual examples.
Goodstein presents the topics in such a fashion that the reader can easily try for himself\herself the idea portrayed. This is generally due to a generous selection of diagrams and exemplary situations, which properly convey the ideas that Goodstein presents (although it would probably be much more beneficial if more of the diagrams accompanied Feynman's actual lecture). The main text is also of a form easily understood and more than adequately conveys the topic that the author presents. However, the literary style is slightly lacking - in that it often becomes a bit informal in description and detail.
Overall, the literary shortcomings do not interfere with the author's ability to convey the topic and makes for a rather interesting read. Yet another above-par lecture accompanied by a surprisingly above-par explanation, Feynman's Lost Lecture: The Motion of Planets Around the Sun is more than worth it's price and should be a welcome addition to any reader's (both physicists and non-physicists alike) personal library.
authors create a labour of love for Feynman.......2002-07-22
This book is a labour of love by Judith and David Goodstein for their friend Richard Feynman. I really enjoyed the revelations of the human side of the great physicist, especially the 20 page reminiscene by David Goodstein (a fellow physicist at cal tech) and Feynman's sometimes gruff answers to questions after the lecture. A different view of the human side of Feynman than what you read in "Surely, you're joking". I found the technical side of the book even more rewarding (see next paragraph) but be warned: this is pretty intense geometry and logic - I have a hard time imagining anyone without at least a couple years of post secondary math or physics or engineering following all the arguments.
But if you have the background and patience, it's some pretty cool stuff. Like many folks, I learned planetary dynamics using calculus, not geometry, and so this was my first exposure to the elegant relationship between velocity diagrams and orbits. While Feynman's lecture is somewhat unorganized and not entirely clear, the book does a great job filling in the blanks. There are certainly some rough spots (way too much time on the initial simple properties of ellipses, the argument connecting Kepler's third law to the law of gravitation is not clear, and more) but anyone with sufficient background willing to invest a few hours will be able to get past these minor problems. I kind of like how the pace accelerates to a ridiculous level by the end, leaving you to pretty much work out all the hard details of Rutherford's law of scattering for yourself.
Listen to the lecture, scratch your head wondering "what the heck was that", then read the book and study the arguments, then listen again and feel enlightened.
Book Description
Classic text still unsurpassed in presentation of fundamental principles. Covers rectilinear motion, central forces, problems of two and three bodies, much more. Includes over 200 problems, some with answers. Reprint of revised 1914 ed.
Customer Reviews:
Great Reference for All.......2007-01-11
If you happen to be unfortunate enough to be using Goldstein's, Classical Mechanics, you will find that Kepler's Laws are not fully explored. I found the Moulton book to fill in alot of gaps. I do mean....alot of gaps! The book gives great detail into series expansions. Not only does it address the series, but it addresses the exact origin and derivation of the series expansions. The only thing it lacks is the recursion formula! Moulton treats all of the equations like this. He shows you complete derivations of everything. And, he is good in showing you applications of what you've learned.
In itself, the book is a textbook, but it serves as a great companion to any modern text. This book is actually quite old, so it gives you alot of insight into "antequated knowledge." You know, the "stuff" teachers already assume you know.
So, I recommend this book to anyone. It is very readable. It explains concepts in a very simplistic manner. Unlike modern books that give you point "A" and expect you to fill in all the gaps to point "Z," Moulton uses the "old style of teaching" where he takes you from point "A" to point "Z" to fully prepare you, and then, he slams you with the impossible problems at the end. But, you find the problems are not nearly as difficult due to his preparations.
Great Book!!
Good historical background.......2007-01-02
This is an excellent textbook covering not only celestial mechanics, but a wide range of astrophysics topics. It was written in 1902 and updated in 1914. At that time nuclear processes were not known, and the composition of the sun was thought to be mainly iron. Given these limitations, however, the math is clear, the definitions are still used, and the historical background is interesting and informative. For a more up-to-date discussion of the subject, I recommend "Fundamentals of Astrodynamics", Bate, Mueller, White (1971), but get this one for the background.
Book Description
Giordano Bruno was an itinerant Italian friar who was burned at the stake in 1600 for heresies, that included his rejection of the Ptolemaic cosmology. Like Galileo, who met a similar fate for similar reasons later in the century, Bruno has been accorded martyrdom to the cause of scientific truth and regarded as a visionary whose ideas were out of joint with the superstitions of his time. In fact, as editors Edward Gosselin and Lawrence Lerner point out, Bruno was far more complex, and his thought far more intricate, than simple stereotype would suggest.
Possibly mad, certainly brilliant, vain, obstreperous, and often ignorant, Bruno was a Christian deeply immersed in Hermeticism and mysticism; simultaneously he was Copernican in his non-homocentric view of the universe. His La Cena de le ceneri was one of the first works in which Copernican theory was received outside the sphere of the natural sciences. These dialogues have never been generally accessible, and are translated into English as The Ash Wednesday Supper.
Using Copernican theory as both a foundation of and a metaphor for his own vast philosophical-theological-political-social program, Bruno united his conflicting beliefs and frustrated his critics. Arguing for the physical reality of the infinite universe with no centre, yet whose centre is everywhere, Bruno sought to prove that each man is every other man. Using this radical cosmology and the imagery of Lenten regeneration, the messianic Bruno sought to heal the secular and religious wounds of sixteenth-century Europe by reconciling Catholic and Protestant, France and England.
In this edition Gosselin and Lerner have provided a broad understanding of Bruno and his time, with background and interpretive discussion. They have also preserved the flavour and ferment of the original discourses and maintained Bruno's eclectic if somewhat obscure style.
Customer Reviews:
Good book, good translation, questionable interpretation.......2003-04-29
Giordan Bruno is still today a controversial philosopher. In this book he exposes his philosophical/cosmological ideas and, in doing so, he uses the new Copernican theory as the basis for a new, daring vision of the universe.
Anybody who would like to familiarize him/herself with the work of Bruno, or is interested in the development of Western ideas will find this book extremely challenging. However I would like to say a few words on the interpretation that the translators give of Bruno's ideas. The translators appear to follow completely an interpretation of Bruno based on the theory of the english scolar Frances Yates. According to this theory Bruno was an exponent of the (then popular) Hermetic movement.
It is imperative to underscore that Yates theory is not universally accepted. While it is known that Hermetic influences can be traced in Bruno, to reduce his whole cosmology and his understanding of Copernican theory to a "hieroglyphic" is misleading if not plainly wrong.
Bruno was not a scientist, but he was the first to intuitively realize the revolutionary consequences of Copernican theory (not only for science) and to bring that theory to its logical conclusions: an infinite universe with infinite earth-like worlds. This vision can not be reconciled with the world of the hermetic "Magus". The whole purpose of the hermetic Magus was to ascend the material world to the world of the perfect spheres. In Bruno's universe there is nothing to ascend to. The universe is composed of a thin air where an infinity of worlds and stars are suspended and move following universal (animistic) principles. The other worlds are corruptible as much as the earth and may be inhabited by earth-like people. The very base of the hermetic doctrine is missing. I would therefore encourage the interested reader not to stop the investigation of Bruno's ideas to the hermetic interpretation, but to also read different points of view (for example Yates interpretation of Bruno's use of images has recently been challenged with very solid arguments by the finding of italian scholars). In particular I found the book of Hillary Gatti "Giordano Bruno and the renaissance science" extremely interesting and complete.
Superb translation and penetrating interpretation.......1996-12-22
Giordano Bruno stands at the cusp between the Renaissance and the modern world. His unique attempts to extract philosophical and theological meaning from Copernicus's forward-looking work provide us with striking insights into the Weltanschauung of his troubled times. Gosselin and Lerner have brilliantly translated Bruno's elegant but involuted Renaissance Italian into clear modern English that nevertheless preserves the spirit of the original. Their thoughtful notes bring comprehensibility to previously misunderstood passages, and the linkage they establish between Bruno's travails and Galileo's later troubles is highly convincing. A must-read for the scientist as well as the philosopher
Book Description
This book provides a comprehensive treatment of dynamics of space systems starting with the basic fundamentals. This single source contains topics ranging from basic kinematics and dynamics to more advanced celestial mechanics; yet all material is presented in a consistent manner. The reader is guided through the various derivations and proofs in a tutorial way. The use of "cookbook" formulas is avoided. Instead, the reader is led to understand the underlying principle of the involved equations and shown how to apply them to various dynamical systems.
The book is divided into two parts. Part I covers analytical treatment of topics such as basic dynamic principles up to advanced energy concept. Special attention is paid to the use of rotating reference frames that often occur in aerospace systems. Part II covers basic celestial mechanics treating the two-body problem, restricted three-body problem, gravity field modeling, perturbation methods, spacecraft formation flying, and orbit transfers.
A Matlab® kinematics toolbox provides routines which are developed in the rigid body kinematics chapter. A solutions manual is also available for professors. Matlab® is a registered trademark of The MathWorks, Inc.
Customer Reviews:
Solid Book.......2006-11-03
Book is well-written and has enough material for two undergraduate courses and one graduate course on celestial mechanics.
Average customer rating:
- great book--exceptional editing
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New Methods of Celestial Mechanics (History of Modern Physics)
Henri Poincare
Manufacturer: AIP Press
ProductGroup: Book
Binding: Hardcover
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ASIN: 1563961172 |
Book Description
Edited by Daniel Goroff, Harvard University This English-language edition of Poincare's landmark work is of interest not only to historians of science, but also to mathematicians. Beginning from an investigation of the three-body problem of Newtonian mechanics, Poincare lays the foundations of the qualitative solutions of differential equations. To investigate the long-unsolved problem of the stability of the Solar System, Poincare invented a number of new techniques including canonical transformations, asymptotic series expansions, and integral invariants. These "new methods" are even now finding applications in chaos and other contemporary disciplines. Contents: Volume I: Periodic and asymptotic solutions: Introduction by Daniel Goroff. Generalities and the Jacobi method. Series integration. Periodic solutions. Characteristic exponents. Nonexistence of uniform integrals. Approximate development of the perturbative function. Asymptotic solutions. Volume II: Approximations by series: Formal calculus. Methods of Newcomb and Lindstedt. Application to the study of secular variations. Application to the three-body problem. Application to orbits. Divergence of the Lindstedt series. Direct calculation of the series. Other methods of direct calculation. Gylden methods. Case of linear equations. Bohlin methods. Bohlin series. Extension of the Bohlin method. Volume III: Integral invariants and asymptotic properties of certain solutions: Integral invariants. Formation of invariants. Use of integral invariants. Integral invariants and asymptotic solutions. Poisson stability. Theory of consequents. Periodic solutions of the second kind. Different forms of the principle of least action.
Customer Reviews:
great book--exceptional editing.......1999-01-13
Goroff should be commended on this important publication
Average customer rating:
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Mathematical Aspects of Classical and Celestial Mechanics (Encyclopaedia of Mathematical Sciences)
Vladimir I. Arnold ,
Valery V. Kozlov , and
Anatoly I. Neishtadt
Manufacturer: Springer
ProductGroup: Book
Binding: Hardcover
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ASIN: 3540282467 |
Book Description
This work describes the fundamental principles, problems, and methods of classical mechanics. The main attention is devoted to the mathematical side of the subject. The authors have endeavored to give an exposition stressing the working apparatus of classical mechanics. The book is significantly expanded compared to the previous edition. The authors have added two chapters on the variational principles and methods of classical mechanics as well as on tensor invariants of equations of dynamics. Moreover, various other sections have been revised, added or expanded. The main purpose of the book is to acquaint the reader with classical mechanics as a whole, in both its classical and its contemporary aspects. The book addresses all mathematicians, physicists and engineers.
From the reviews of the previous editions: "... The book accomplishes the goals it has set for itself. While it is not an introduction to the field, it is an excellent overview. ..." American Mathematical Monthly, Nov. 1989.
Book Description
Lifting Titan's Veil is a revealing account of the second largest moon in our solar system. This world in orbit around Saturn is the only body in the solar system with an atmosphere strikingly similar to Earth's. Titan is like a giant frozen laboratory that may help scientists understand the first chemical steps towards the origin of life. Beginning with its discovery in 1655, the authors describe our current knowledge of Titan, including observations made before the space age, results from the Voyager missions of the 1980s, and recent revelations from the world's most advanced telescopes. In Lifting Titan's Veil, Ralph Lorenz includes his personal experiences in preparing for the Cassini mission, which will reach Saturn in 2004 and release the Huygens probe into Titan's atmosphere in 2005. A splendid introduction to Titan, this book will appeal to anyone interested in astronomical discovery and space exploration. Ralph Lorenz trained as an engineer and worked for the European Space Agency at the very beginning of the Huygens project. Since obtaining a PhD at the University of Kent, England, he has worked as a planetary scientist at the University of Arizona, Tucson. His research interests focus on Titan, but also include climatology, radar, impact dynamics and spacecraft and instrumentation design. He has been involved in NASA's largest planetary mission (Cassini) and its smallest (the DS-2 Mars Microprobes). Jacqueline Mitton obtained a Ph.D in astrophysics from the University of Cambridge, and is now a full-time writer and media consultant specializing in astronomy. She has served as Press Officer for the Royal Astonomical Society since 1989, and was Editor of the Journal of the British Astronomical Association 1989-1993. She has written or co-authored sixteen published astronomy books, the most recent, The Cambridge Dictionary of Astronomy (2001).
Customer Reviews:
A Pale Orange Dot.......2004-06-06
Rare is the work that meets the high publication standards within a given scientific discipline while being simultaneously accessible to the public at large. In particular, and notwithstanding its cachet and increasing multidisciplinary approach, the field of planetary sciences often offers up works that are either overspecialized to the point of alienating all but a very select readership or those works appealing to a broad audience but derisively dismissed by experts as popularizing and superficial. Bridging the wide chasm separating these two extremes requires talented writing. LIFTING TITAN'S VEIL: EXPLORING THE GIANT MOON OF SATURN, by Ralph Lorenz and Jacqueline Mitton, is a book that accomplishes this with a professionally credible, yet highly readable, account of mankind's attempts to unravel the mysteries of Saturn's largest moon. Lorenz and Mitton succeed in this collaboration due in no small part to their highly impressive credentials. The former is one of today's most prolific planetary scientists, especially regarding the study of Titan, and also a participant in the current Cassini-Huygens mission to Saturn and Titan. The latter, with a Ph.D. in astrophysics, is a renowned science writer credited with authorship or co-authorship of sixteen astronomy-related works.
Answering, in the most basic way, the "why" question that often accompanies any discussion of planetary exploration, the authors write, "More than anything else, planetary exploration gives us a sense of perspective, a notion of who we are, where we came from and what our destiny might be. We can learn from all worlds. Each planet and moon in the solar system has its own unique history. Each is an experiment with a different set of conditions..." More specifically, they note that Titan, with its orange-tinted, nitrogen-rich 1.5 bar atmosphere containing traces of hydrocarbons and other organics, might represent an analogue, albeit a cyrogenic one, of the prebiotic atmosphere surrounding early Earth. Considering that mankind has yet to demonstrate time travel, studying Titan may be the only way (outside of modelling and laboratory experiments, both of which have obvious limitations) to explore this critical phase in Earth's history. It goes without saying that studying Titan, especially in situ, is exploration at the cutting edge.
Coming at an especially propitious moment, the book provides a comprehensive synthesis of the body of Titan-related science, which is placed into historical context. Starting with the moon's discovery in 1655 by Christiaan Huygens, the Dutch astronomer, LIFTING TITAN'S VEIL spans a time frame of three and a half centuries of astronomical observations leading up to the modern era of spacecraft reconnaissance and exploration. The book is organized topically, with a distinct narrative style (e.g., the unique "Ralph's Log" feature), and runs the gamut from astronomy to meterology to geology to speculation about future Titan exploration. I highly recommend LIFTING TITAN'S VEIL to all readers. Anyone interested in Titan, this "pale orange dot," will, I think, find something of worth in this work. Indeed, I personally feel that Chapter 3, "Titan's puzzling atmosphere," is alone worth the price of the book.
interesting scientific work.......2003-11-01
This book is fun for whoever loves science.Its an example of applying science to data gathered from earth telescopes and space probes,mainly through the eyes of Hubble and Voyager. Attempts at explaining theoretical models behind possible chemical and physical processes at work on this moon are made.It would be interesting to compare the current thinking with what Cassini will actually reveal in a years time!
Very good book on what we know now........2003-02-04
The authors do a good job in this book and it is a good read. What is interesting is how much we do not know about this amazing satellite. We have no idea about what the surface is like. In less than 5 years the Cassini mission w/ the Huygens lander will make this book obsolete. You have to wonder why this book was written so close to Cassini's arrival. Until then this book should be standard text in any amatuer astronomers library. The authors give too much credit to Carl Sagan and not enough to the real scientists who have contributed to our limited knowledge on the subject. Besides that this book almost gets my highest rating.
Titan And The Pursuit Of Science.......2002-12-31
This is an exciting time for planetary exploration, when after the solar system has been reconnoitered by spacecraft (except Pluto) and now spacecraft are being sent to specific planets and moons, etc., for closer examination. LIFTING TITAN'S VEIL covers the Cassini mission to Saturn and it's large moon Titan, known to possess a thick atmosphere and perhaps a hydrocarbon ocean, due to insert itself into Saturnian orbit in July, 2004, the attached Huygens probe should enter Titan's atmosphere January, 2005.
The authors include a lot of science in this volume, including background information concerning moons and planets across the solar system. Most of this book covers Titan of course, what we know about it and how we came about that knowledge, from early times to the present. Titan's atmosphere and surface and sub-surface conditions recieve the most attention, with the chemistry of the atmosphere discussed at length. Also, the authors debate the possibility of an ethane/methane ocean existing on Titan as the surface temperature, according to available evidence, is close to the triple point of methane. All of this science can of course, as the authors point out, shed light on the formation and evolution of the solar system and in turn give us clues to our own origins in the misty past. As a chemist I especially enjoyed the information on the chemistry of Titan, and the space-buff in me enjoyed all of it. In addition, the Cassini spacecraft is detailed, and there are lots of illustrations, many in color.
On a personal note, I remember being at the space center as a visitor just a few days before the launch of Cassini, in October, 1997, and thinking that here is this spacecraft sitting out there on the pad just a few hundred yards from the Atlantic beach, I wondered then, will Huygens, at the end of it's journey, find another beach? Space travel is cool!
Excellent!.......2002-06-28
In "Lifting Titan's Veil", Ralph Lorenz and Jacqueline Mitton have written a lucid account of what we know about Titan, and how the Huygens probe which will parachute down to its surface in 2005 is designed to tell us more. As a research scientist at the Lunar and Planetary Laboratory whose doctoral thesis was on the topic, Ralph is well placed to sift through the various competing theories. In fact, he designed the probe's spear-like penetrometer which - if all goes to plan - will be the first human artefact to come into contact with this intriguing moon's surface. As an avid reader on the topic, I thoroughly recommend this book.
Book Description
When a leaf falls on a windy day, it drifts and tumbles, tossed every which way on the breeze. This is chaos in action. In Fly Me to the Moon, Edward Belbruno shows how to harness the same principle for low-fuel space travel--or, as he puts it, "surfing the gravitational field."
Belbruno devised one of the most exciting concepts now being used in space flight, that of swinging through the cosmos on the subtle fluctuations of the planets' gravitational pulls. His idea was met with skepticism until 1991, when he used it to get a stray Japanese satellite back on course to the Moon. The successful rescue represented the first application of chaos to space travel and ushered in an emerging new field.
Part memoir, part scientific adventure story, Fly Me to the Moon gives a gripping insider's account of that mission and of Belbruno's personal struggles with the science establishment. Along the way, Belbruno introduces readers to recent breathtaking advances in American space exploration. He discusses ways to capture and redirect asteroids; presents new research on the origin of the Moon; weighs in on discoveries like 2003 UB313 (now named Eris), a dwarf planet detected in the far outer reaches of our solar system--and much more.
Grounded in Belbruno's own rigorous theoretical research but written for a general audience, Fly Me to the Moon is for anybody who has ever felt moved by the spirit of discovery.
Books:
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
- History: Fiction or Science? (Chronology, No. 1)
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