88 résultats
19064926Palermo: Tipografia Matematica 1906. First edition. <p>First edition extremely rare offprint of this crucial paper submitted in July 1905 which many historians believe entitles Poincaré to a share with Einstein and Lorentz of the credit for the discovery of special relativity. Poincaré shows that the Lorentz transformations form a group and that the Maxwell-Lorentz electron theory is invariant under this so-called 'Lorentz group'. Poincaré also puts forward a relativistic theory of gravity.</p>. THE SPECIAL THEORY OF RELATIVITY. <p>First edition extremely rare separately-paginated offprint of this crucial paper in the development of the special theory of relativity in which Poincaré showed that the Lorentz transformations form a group and that the Maxwell-Lorentz electromagnetic theory is invariant under this 'Lorentz group' when augmented by space and time translations it becomes what is now known as the 'Poincaré group'. "The development of mathematics in the nineteenth century began under the shadow of a giant Carl Friedrich Gauss; it ended with the domination by a genius of similar magnitude Henri Poincaré. Both were universal mathematicians in the supreme sense and both made important contributions to astronomy and mathematical physics . Poincaré was active in the discussions concerning Lorentz's theory of the electron from 1899 on; Poincaré was the first to observe that the Lorentz transformations form a group . and many physicists consider that Poincaré shares with Lorentz and Einstein the credit for the invention of the special theory of relativity" DSB. "In 1905 1906 and 1908 Poincaré published three important papers on the dynamics of the electron. Of these the first is a note in the Comptes Rendus submitted 5 June that summarizes the second paper submitted 23 July 1905 the offered paper in which Poincaré introduced the Lorentz group" Gray pp. 361-362. In these papers "Poincaré mentions the negative result of Michelson's experiment and concludes that 'this impossibility to prove absolute motion appears to be a general law of nature.' He then sets out to demonstrate that the transformations of the electromagnetic field equations which he calls 'the Lorentz transformations' form a group. But there is more: he closes his article by wondering about the effect of the Lorentz transformations on forces in general and in particular on gravitation. It is a question that Einstein would not ask until 1907 and which would lead him to general relativity. In that same article Poincaré assumes that gravitation propagates 'at the speed of light' and introduces the idea of a 'gravitational wave' . the Frenchman lays the foundations of a theory of gravitation that in his own words 'would not be altered under the group of Lorentz transformations' that is to say it would be 'Lorentz invariant.' Moreover in the same article Poincaré introduces time as a fourth imaginary coordinate as well as the four-dimensional approach which Minkowski would make precise in 1908 without mentioning Poincaré" Eisenstaedt p. 35. "Poincaré undoubtedly discovered many of the ideas that now form our mental picture of the theory of special relativity and associate with the name of Einstein. In his analysis of the relativistic nature of investigations into space and above all time he discussed how different observers can compare time measurements by exchanging light signals he called for a new physics in which the speed of light is an impassable limit and he came up with the Lorentz group - all of this independently of Einstein and mostly before him. He was indeed well ahead of Einstein in speculating about a truly relativistic theory of gravity" Gray p. 368. Poincaré's paper was the first to demonstrate the power of symmetry or invariance principles in physics. "One hundred years after Poincaré proposed the symmetry principle for all physical laws under uniform relative motion symmetry principles in physics have transcended both kinetic and dynamic properties and are at the very heart of our understanding of the universe" Hsu & Zhang p. xxii. We have located three institutional copies Deutsches Museum Max Planck Institut Rice University. No copies in auction records.</p> <br /> <p>"When in the early 1890s Hertz and Heaviside perfected Maxwell's electrodynamics of moving bodies they noted that it was incompatible with Fresnel's theory of aberration but decided to postpone further study of the relation between ether and matter. Unknown to them Lorentz had long ago reflected on this relation and reached conclusions that sharply departed from Maxwell's original ideas. Unlike Maxwell's British disciples Lorentz learned Maxwell's theory in a reinterpretation by Hermann Helmholtz that accommodated the continental interpretation of charge current and polarization in terms of the accumulation flow and displacement of electric particles" Darrigol 2005 p. 7.</p> <br /> <p>"By 1878 Lorentz had arrived at an understanding close to that upon which his later electron theory was founded: charged harmonic oscillators exist within ponderable molecules and the ether in intermolecular spaces retains the same properties as it has in a vacuum. Through the 1880s Lorentz continued to be concerned with molecular physics but chiefly in the context of the mechanical theory of heat. Prompted by Hertz's critique of Maxwell's theory as it applied to bodies in motion Lorentz returned to the foundation of electrodynamics in the early 1890s . In 1892 he published his first statement of the electron theory La theorie électromagnétique de Maxwell et son application aux corps mouvants" McCormmach pp. 461-462. </p> <br /> <p>According to Lorentz's theory the ether is stationary and is not dragged along by bodies moving through it so the earth has an absolute velocity relative to the ether. The question was whether or not the earth's absolute velocity is detectable through optical or electromagnetic effects of the accompanying ether 'drift' or 'wind'. The magnitude of the effects of the wind is measured theoretically by the ratio of the speed of the earth's motion v to the speed of light c. The ratio is small for the earth but not so small as to be beyond the reach of observation. The effects of this wind however were not observed and for his theory to be credible Lorentz had to explain their absence. Lorentz studied these questions in detail in his Versucheiner Theorie der electrischen und optischen Erscheinungen in bewegten Körpern 1895. "He showed that according to the theory an unexpected compensation of actions eliminates all effects of the ether wind to first-order approximation i.e. neglecting terms involving the very much smaller second and higher powers of v/c. He analysed the absence of first-order effects of the ether wind in phenomena such as reflection refraction and interference with the aid of a formal 'theorem of corresponding states'. The theorem asserts that to first-order accuracy no experiments using terrestrial light sources can reveal the earth's motion through the ether. By introducing transformations for the field magnitudes and spatial coordinates and a 'local time' Lorentz showed that to first-order approximation the equations describing a system in a moving reference frame are identical with those describing the corresponding system in a frame at rest in the ether for which Maxwell's equations hold exactly" Jungnickel & McCormmach pp. 233-235. "At the end of his treatise Lorentz acknowledged that his corresponding states theorem could not account for the second-order null effect of the Michelson-Morley experiment. He referred to his calculation earlier in the treatise of the influence of translation on the electric i.e. electrostatic force. If he argued the molecular forces are influenced in the same way as the electric force then a ponderable body such as the arms of Michelson's interferometer must contract in the direction of the earth's motion in a ratio of √1 - v2/c2 in order that its molecular configuration remain in equilibrium" McCormmach p. 471. This contraction was exactly what was required to explain the null result of the Michelson-Morley experiment.</p> <br /> <p>"Poincaré had been teaching electrodynamics at the Sorbonne for several years. After reviewing the theories of Maxwell Helmholtz Hertz Larmor and Lorentz he judged that the latter was the one that best accounted for the whole range of optical and electromagnetic phenomena. Yet he was not entirely satisfied with Lorentz's theory because he believed it contradicted fundamental principles of physics . the principle of relativity the principle of reaction and the principle of least action . Lorentz's theory satisfied Poincaré's relativity principle only approximately and did so through what Poincaré called two 'coups de pouce' 'fudges': the local time and the Lorentz contraction. Moreover it violated Poincaré's reaction principle . Lorentz took some of Poincaré's criticism seriously. In 1904 he offered a new version of his theory in which the invariance of optical phenomena held at every order in v/c without the 'coups de pouce' reproached by Poincaré" " Darrigol 2005 p. 9.</p> <br /> <p>"Poincaré reacted enthusiastically to Lorentz's memoir because he saw in it an opportunity to satisfy the relativity principle in a complete and exact manner. He published the results of the ensuing reflections under the title 'Sur la dynamique de l'electron' first as a short note of 5 June 1905 in the Comptes Rendus and as a bulky memoir in the Rendiconti of the Circolo matematico di Palermo for the following year" Darrigol 2005 pp. 9-12.</p> <br /> <p>"He first defined the 'relativity postulate' as follows:</p> <br /> <p>'It seems that the impossibility of experimentally detecting the absolute motion of the earth is a general law of nature; we naturally incline to assume this law which we shall call the Postulate of Relativity and to do so without any restriction.'</p> <br /> <p>"Correcting Lorentz's expression of the transformed source terms he then showed that the Lorentz transformations . left the Maxwell-Lorentz equations invariant . Poincaré showed that they formed a group . He noted that the coordinate transformations left the quadratic form x2 y2 z2 - c2t2 invariant and could thus be regarded as rotations in a four-dimensional space with an imaginary fourth coordinate. He obtained the relativistic law for the addition of velocities for which the combined velocity always remains inferior to the limit c.</p> <br /> <p>"Next Poincaré showed that a model of the contractile electron could be conceived in which the cohesive forces the so-called Poincaré tension preserved the Lorentz invariance. He thus retrieved Lorentz's expression for the momentum of the electron. Lastly he argued that in order to be compatible with the postulate of relativity gravitational interactions should propagate at the velocity of light; and he proposed modifications of Newton's law of gravitation that made it compatible with Lorentz invariance. </p> <br /> <p>"Thus there is no doubt that Poincaré regarded Lorentz invariance as a general requirement for the laws of physics and that he identified this formal condition with the principle of relativity" ibid. p. 12. </p> <br /> <p>In paragraph 1 of the Rendiconti paper Poincaré wrote Maxwell's equations in potential form and in units in which c = 1. He observed that if in one coordinate frame one has a sphere such as an electron moving at constant velocity then in a second frame moving at constant velocity relative to the first the sphere will be seen as an ellipsoid the shape of which depends on the velocity of the sphere. He next obtained the components of the electric and magnetic fields in the new frame and observed that Maxwell's equations were still satisfied. He also wrote down the new addition law for velocities. In paragraph 2 Poincaré stated a version of the principle of least action and used it to deduce a formula for the pressure on an electron. In paragraph 3 he then showed that a Lorentz transformation leaves the action unaltered and so re-obtained the Lorentz invariance of Maxwell's equations. In paragraph 4 Poincaré shows that the Lorentz transformations form a group. In paragraph 5 Poincaré used his theory of Lorentz transformations to rederive the Langevin waves that describe the electromagnetic field produced by a single moving electron. In paragraph 6 he considered the much-discussed topic of the Lorentz contraction of electrons. In paragraphs 7 and 8 Poincaré returned to the question of whether the contraction hypothesis makes it impossible to detect motion. He showed that the true reason that absolute motion cannot be detected using electromagnetic phenomena is that the Lorentz transformations form a group and that Maxwell's equations are invariant under it. In paragraph 9 he considered the possibility of detecting absolute motion using phenomena that were not of electromagnetic origin such as gravitation. He considered the effect of a Lorentz transformation on any function of time position and velocity. He further assumed that any suitable law of attraction would reduce to Newton's law for bodies at rest and would not disagree with astronomical observations of slowly moving objects. He looked for invariants under the Lorentz group and found that if speeds faster than light are allowed then time can pass negatively. He excluded this possibility and deduced that he was left with the proposition that gravity would travel at the same speed as light. He noted that as the deviations from Newton's laws are of second order in the ratio v/c they will be difficult to observe.</p> <br /> <p>"To sum up in 1905/6 Poincaré obtained a version of the theory of relativity based on the principle of relativity and the Lorentz group. He believed this symmetry should apply to all forces in nature. He exploited it to derive the dynamics of the electron on a specific model and to suggest a modification of the law of gravitation. He nevertheless maintained the ether as the medium in which light truly propagated at the constant velocity c and clocks indicated the true time. He regarded the quantities measured in moving frames as only apparent although the principle of relativity forbade any observational distinction between a moving frame and the ether frame. He understood the compatibility of the Lorentz transformations of coordinates with the optical synchronization of clocks and the invariance of the apparent velocity of light but hesitated on the physical significance of the Lorentz contraction and never discussed the dilation of time" ibid. pp. 14-15.</p> <br /> <p>Poincaré's achievements in this paper have led some to argue that he and Lorentz should be considered the true inventors of the special theory of relativity rather than Einstein. "By 1905 Poincaré's and Einstein's reflections on the electrodynamics of moving bodies led them to postulate the universal validity of the relativity principle according to which the outcome of any conceivable experiment is independent of the inertial frame of reference in which it is performed. In particular they both assumed that the velocity of light measured in different inertial frames was the same. They further argued that the space and time measured by observers belonging to different inertial systems were related to each other through the Lorentz transformations. They both recognized that the Maxwell-Lorentz equations of electrodynamics were left invariant by these transformations. They both required that every law of physics should be invariant under these transformations. They both gave the relativistic laws of motion. They both recognized that the relativity principle and the energy principle led to paradoxes when conjointly applied to radiation processes. On several points - namely the relativity principle the physical interpretation of Lorentz's transformations to first order and the radiation paradoxes - Poincaré's relevant publications antedated Einstein's relativity paper of 1905 by at least five years and his suggestions were radically new when they first appeared. On the remaining points publication was nearly simultaneous . The differences between the two theories of Einstein and Poincaré are sometimes regarded as implying different observable predictions even within the domain of electromagnetism and optics. In reality there is no such disagreement for Poincaré's ether is by assumption perfectly undetectable and every deduction made in Einstein's theory can be translated into a deduction in Poincaré's theory . In sum then Einstein could have borrowed the relativity principle the definition of simultaneity the physical interpretation of the Lorentz transformations and the radiation paradoxes from Poincaré" Darrigol 2004. </p> <br /> <p>"In 1919 the mathematician Mittag-Leffler wrote to Einstein asking him to contribute an article to the Acta Mathematica volume in honor of Poincaré. Four months later Einstein responded. The letter had reached him after a long delay and 'it might be too late' now. Mittag-Leffler replied that Einstein could still send a paper if he cared to do so. Two and a half months later Einstein replied that obligations and travel prevented him from contributing adding that his decision 'should be considered as nothing but high respect for the task'.</p> <br /> <p>"In December 1920 a New York Times correspondent interviewed Einstein in his home on the Haberlandstrasse in Berlin. In reply to a question about the origins of relativity theory Einstein said 'It was found that Galilean invariance would not conform to the rapid motions in electrodynamics. This led the Dutch professor Lorentz and myself to develop the theory of special relativity'. An additional mention of Poincaré's pioneering ideas might have been gracious. In an interview with Le Figaro in 1921 he expressed his great admiration for Poincaré however.</p> <br /> <p>"In the early 1950s I once asked Einstein how Poincaré's Palermo paper had affected his thinking. Einstein replied that he had never read that paper. I owned a copy and asked if he would like to borrow that. Yes he said he would. I brought it to him. It was never returned to me. Some time after Einstein's death I asked Helen Dukas if she would please look for it. It had vanished ." Pais p. 171.</p> <br /> <p>Darrigol O. 2004 'The Mystery of the Einstein-Poincaré Connection' Isis 95 2004 pp. 614-626. Darrigol 'The genesis of the theory of relativity' Séminaire Poincaré 1 2005 pp. 1-22. Eisenstaedt The Curious History of Relativity 2006. Gray Henri Poincaré: A Scientific Biography 2012. Hsu & Zhang Lorentz and Poincaré invariance. 100 Years of Relativity 2001. Jungnickel & McCormmach Intellectual Mastery of Nature. Theoretical Physics from Ohm to Einstein Vol. 2 1986. McCormmach 'H. A. Lorentz and the Electromagnetic View of Nature' Isis 61 1970 pp. 459-497. Pais Subtle is the Lord 1982.</p> <br/> <br/> 8vo 257 x 174 mm pp. ii 1 2-48 journal pagination 129-176. Original printed wrappers a little darkened at edges upper outer corner of rear wrapper creased former owner's private ink stamp on front wrapper. A very good copy. [Tipografia Matematica] unknown
1905000234Paris: Gauthier-Villars 1905. First Edition . Printed Wrappers. Very Good. 10"x6.5. Paris: Gauthier-Villars 1905-1910. First Edition. 3 volumes in 4 vi 365 3; 4 165 3; 4 136 2 2 ad.; 4 472. Illustrated with text figures and two folding world maps in Vol. III. 10x6½ original grey printed wrappers. First edition of a work fundamental to celestial mechanics. Poincaré was one of the greatest mathematical minds of the 19th century; his work on the "three-body problem" the gravitational interplay of three masses leads some to credit him as a co-discoverer of the special theory of relativity along with Einstein and Lorentz. The present is one of two of Poincaré's major works on the subject. With the inkstamp of Paul Berg. Scarce no copies appear in ABPC for the past 20 years. Some light wear and staining/darkening to spines back wrapper of Vol. III chipped at edges minor splitting at joints but overall very good or better with clean pages partially unopened. One of those sets you just have to hold in your hands and stare at sometimes. L20n <br/> <br/> Gauthier-Villars unknown
1972ZB394454Gauthier-Villars 1972-1979. volumes 16-57; lacks volumes 20-21; 26; 29; 31. 1972-1979. partly bound library markings textually clean & tight PRICE IS FOR THE LOT. - If you are reading this this item is actually physically in our stock and ready for shipment once ordered. We are not bookjackers. Buyer is responsible for any additional duties taxes or fees required by recipient's country. Photos available upon request. Gauthier-Villars unknown
190547065Paris Gauthier-Villars 1905. 4to. No wrappers. In: "Comptes Rendus Hebdomadaires des Séances de L'Academie des Sciences" Tome 140 No 23. Titlepage to vol. 140. Pp. 1497- 1572. Entire issue offered. Poincaré's paper: pp. 1504-1508. Titlepage with a stamp on verso. A bit of upper right corner gone. Leaves a bit fragile caused by the poor paperquality. Clean. <br/><br/><em>First printing of this famous paper delivered to the Academy of Paris on its session of June 1905 as the first Poincaré relativistic text "On the dynamic of electron" where Poincaré set forth the essential element of relativity and the "Lorentz Transformation". Poincaré concludes "It seems that this impossibility of demonstrating absolute motion is a general law of nature" !! and that Newton's law need modification and that there should exist gravitational waves which propagate with the velocity of light !! - This famous paper gave rice to the controversy about priority around the discovery of special relativity as Poincaré's paper is from June 5 and Einstein's first paper on relativity was received by the "Annalen" on June 30 both 1905."The official history tells us that Einstein without having read the works of Lorentz and Poincaré past 1895 and without any prior publication on the subject had written alone in Bern the "founder paper" of the Relativity in the last days of June 1905. For that reason and a few other of less importance the biographers of Einstein have called that year 1905 "Annus mirabilis" and its centenial is celebrated in 2005. However on June 5 1905 after many other papers on this subject Poincaré had presenteda note at the French Academy of Science a text that contains the essential elements of Einstein paper: the relativity principle and the "Lorentz transformation". This coincidence involves the suspicion of a possible plagiarism of Poincaré by Einstein." C. Marchal "Poincaré Einstein and the Relativity: the Surprising Secret." </em> unknown
19051301170006Paris : Gauthier-Villars 1/1/1905. Hardcover. Good. Paris : Gauthier-Villars 1905. 8vo. Volume One and Volume Two parts 1 and 2 bound together. 365pp.; 165pp; 137pp. Quarter bound in contemporary leather with matching corners. Spine cloth lacking. Patterned grey cloth boards. Rubbing to extremities. Minor cracking to hinges. Tight binding; solid boards. Interior pages are clean unmarked and in excellent condition. Ships daily. Paris : Gauthier-Villars hardcover
190246066HB1902. EA. Paris E. Flammarion 1902. Kl.-8°. 2 Bl. 284 S. Halblederband der Zeit mit goldgeprägtem Rückentitel und Linienvergoldung auf marmorierten Deckeln leicht berieben. Vergoldeter Kopfschnitt. Erste Vakatseite mit kleinem Einriss. Durchgehend leicht bis mäßig gebräunt. Sonst in schöner Erhaltung. unknown
191150Budapest: Magyar Tudományos Akadémia Société Franklin 1911. Only edition. Published unbound. In fine condition. Only edition. Published unbound. 38 p. The “International Bolyai János Prize of Mathematics†founded by the Hungarian Academy of Sciences in 1902 with the aim to compensate the lack of Nobel Prize in the field of mathematics. It is awarded in every five years to mathematicians having published their monograph describing their own important new results. The prize was given first time in 1905 to Henry Poincaré and for second time to David Hilbert. Because of the outbreak of WWI and other historical and political reasons the prize was not given until the year 2000.<br /> David Hilbert was awarded in 1910 by the committee of Gyula Julius KÅ‘nig Gusztáv Rados Gösta Mittag-Leffler and Henry Poincaré.<br /> In the brochure there is a short description of the Prize a few words about the committee and the declaration that for the years 1905–1906 Hilbert is awarded. The following 36 pages is the report of Poincaré about the works and achievements of Hilbert in fields of invariant theory transcendent number e constant after Lindemann arithmetics the Hilbert-Waring theorem geometry integral equations and the Dirichlet’s principle. Magyar Tudományos Akadémia (Société Franklin) unknown
1929170615Garden City New York: Doubleday Doran & Company 1929 & 1931. First US editions in English first printings presentation copies inscribed by the author on the half-title of each volume respectively "À Mr Aage Birger Nilsen R. Poincaré" and "À Monsieur Aage B. Nilsen Hommage de l'auteur R. Poincaré". Poincaré 1860-1930 served as President of France from 1913 to 1920. Prior to the war he was noted for his anti-German policy and shifting the Franco-Russian alliance to an offensive posture. During the war he maintained a belligerent position though from 1917 was increasingly sidelined by prime minister Clemenceau who led the Versailles negotiations. Poincaré's memoirs were published in French in 11 volumes. In total four volumes appeared in English: two volumes published in 1926 which covered 1912 and 1913 and these marked as volume III and IV taking the narrative through to the end of 1915. Although in French Poincaré's memoirs cover the entirety of the war these were the only volumes published in English. They were published in the US and UK the same years. The recipient Nilsen acquired the signatures of various prominent figures in the 1920s including Winston Churchill and George Gershwin; there are references to him as a military attaché and railroad executive. 2 vols octavo. Original blue cloth spines lettered in gilt. With dust jackets. Unclipped jackets with a hint of rubbing and soiling: fine copies in near-fine jackets. hardcover
1993Q-1563961172Springer 1993-10-01. Hardcover. New. In shrink wrap. Looks like an interesting title! Springer hardcover
190849616Berlin Stockholm Paris Almqvist & Wiksell 1908. 4to. Bound in contemporary half cloth with gilt lettering to spine. In "Acta Mathematica" Vol 31 1908. Entire volume offered. Stamps to title page otherwise a fine and clean copy. Pp. 1-64. Entire volume: 8 408 2 12 pp. <br/><br/><em>First appearance of Poincaré's important paper in which he presented the first solution to the problem of the uniformization of curves - now know as The Uniformization Theorem. Clebsch and Riemann tried to solve the problem of the uniformization for curves. "In 1882 Klein gave a general uniformization theorem but the proof was not complete. In 1883 Poincaré announced his general uniformization theorem but he too had no complete proof. Both Klein and Poincaré continued to work hard to prove this theorem but no decisive result was obtained for twent-five years. In 1907 Poincare in the offered paper and Paul Koebe independently gave a proof of this uniformization theorem.With the theorem on uniformization now rigorously established an improved treatment of algebraic functions and their integrals has become possible." Morris Kline. </em> hardcover
191217483<p>Paris: Gauthier-Villars 1912 Second edition. Contemporary half calf. Spine richly gilt-decorated red label. . Octavo. A fine copy wkitht he original wrappers bound in. Henry Poincaré 1854-1912 was one of the most versatile mathematicians physicists and philosophers of the pre-modern era. He came extremely close to announcing the special theory of relativity just months before Einstein. In this treatise on probability theory Poincaré introduces the foundation of modern ergodic theory and expands on Gauss's law of large numbers. Whereas Gauss in Theoria Motus proved the normal law of error by assuming that the probability of a certain deviation depends only on the magnitude of the deviation Poincaré relaxes this assumption and shows that a law much more general than the Gaussian distribution may be deduced. See Whittaker The Calculus of Observations p. 218.</p> Gauthier-Villars,
1915041847Paris: Ministère De L'instruction Publique Et Des Beaux-Arts 1915. 1st Edition . Hardcover. Very Good. Plates. 397 405 Pp .Quarter Brown Morocco Gilt Yellow Endpapers. No Marks Not Ex-Library. First Printing Some Wear Gilt Bright Hinges Tight.Text In French. <br/> <br/> Ministère De L'instruction Publique Et Des Beaux-Arts hardcover
191249614Berlin G. Reimer 1912. 4to. Bound in contemporary half cloth with gilt lettering to spine. In "Acta Mathematica" Vol 35 1912. Entire volume offered. Stamps to title page otherwise a fine and clean copy. Pp. 1-28. Entire volume: 4 398 1 27 19 pp. <br/><br/><em>First appearance of Poincaré's report on 1910 Bolyai Prize which was awarded to David Hilbert in recognition of his work in fields of invariant theory transcendent number e constant after Lindemann arithmetic the Hilbert-Waring theorem geometry integral equations and the Dirichlet’s principle.In 1910 Hilbert became only the second winner of the Bolyai Prize of the Hungarian Academy of Sciences. It was the recognition of the fact that Hilbert was one of the leading mathematicians of his time. The first winner of the prize in 1905 was Henri Poincare the most prolific mathematician of the 19th century.Poincaré about the works and achievements of David Hilbert in fields of invariant theory transcendent number e constant after Lindemann arithmetic the Hilbert-Waring theorem geometry integral equations and the Dirichlet’s principle. </em> hardcover
190949622Berlin Uppsala & Stockholm Paris Almqvist & Wiksell 1909. 4to. Bound in contemporary half cloth with gilt lettering to spine. In "Acta Mathematica" Vol 33 1909. Entire volume offered. Stamps to title page otherwise a fine and clean copy. pp. 195-200.Entire volume: 6 392 12 pp. <br/><br/><em>First printing of Poincaé's work on Fredholm's equation.". heuristic variational arguments convinced Poincaré that there should be a sequence of "eigenvalues" and corresponding "eigenfunctions" for this problem but for the same reasons lit was not able to prove their existence. A few years later Fredholm's theory of integral equations enabled him to solve all these problems; it is likely that Poincareé's papers had a decisive influence on the development of Fredholm's method in particular the idea of introducing a variable complex parameter in the integral equation. It should also be mentioned that Fredholm's determinants were directly inspired by the theory of "infinite determinants" of H. von Koch which itself was a development of much earlier results of Poincaré in connection with the solution of linear differential equations." DSB </em> hardcover
190739130Berlin Stockholm Paris Almqvist & Wiksell 1907. 4to. Without wrappers as extracted from "Acta Mathematica. Hrsg. von G. Mittag-Leffler" Bd. 31 pp. 1-63. <br/><br/><em>First edition. Clebsch and Riemann tried to solve the problem of the uniformization for curves. "In 1882 Klein gave a general uniformization theorem but the proof was not complete. In 1883 Poincaré announced his general uniformization theorem but he too had no complete proof. Both Klein and Poincaré continued to work hard to prove this theorem but no decisive result was obtained for twent-five years. In 1907 Poincare in the offered paper and Paul Koebe independently gave a proof of this uniformization theorem.With the theorem on uniformization now rigorously established an improved treatment of algebraic functions and their integrals has become possible." Morris Kline. </em> unknown
1922019533Paris France: not published 1922. Autograph. Very good condition. No Binding. Signed by Authors. First Edition. A printed calling card measuring approximately 2.25" x 3.75" with typed identification upon which is signed "R. Poincare". No date circa 1922. The card was removed from a sheet of paper and the residue remains on the back of the card. Poincare was Prime Minister in 1912 and serving as President of the Republic from 1913 to 1920. In 1922 Poincaré returned to power as Prime Minister. In 1923 he ordered the Occupation of the Ruhr to enforce payment of German reparations. His government was defeated by the Cartel des Gauches at the elections of 1924. He served a third term as Prime Minister in 1926-1929. . not published unknown
191639010c. 1916. Poincaré's official carte de visite elegantly printed "Raymond Poincaré / Président de la République" with a lengthy inscription WRITTEN DURING HIS PRESIDENCY AND DURING THE FIRST WORLD WAR to a close friend: "Merci mon cher ami de votre bienveillante appréciation. On a peu de mérite à parler clairement lorsqu'on rend la pensée de ce merveilleux pays: il suffit d'être un bon philosophe. Ami je me rappelle cette charmante après diner que nous avons passé au Prieuré. Dites je vous prie à Madame Dumay en lui présentant mes respects que nous vous réinviterons après la paix. Votre serviteur dévoué. Poincaré signed with initials. 6.6 x 10.7 cm. In perfect condition. <br/><br/> unknown
192339310Paris: Firmin-Didot 1923. Poincaré's carte de visite with four lines of autograph text and his monogram signature. THE TEXT MENTIONS M. André MAGINOT THE MINISTER OF WAR WHO WAS TO PROMOTE THE CONSTRUCTION OF THE FAMOUS "MAGINOT LINE". Poincaré 1860-1934 was elected to the Académie Française in 1909 and served as president of France from 1913 to 1920 thus during all of World War One. In perfect condition. A great rarity. <br/><br/> Firmin-Didot unknown
1993SONG1563961172Springer 1993-10-01. 1992. hardcover. Used: Good. 6.50x4.75x9.50. Buy with confidence. Excellent Customer Service & Return policy. Springer hardcover
1926151171New York: Doubleday Page & Company 1926-1929. First American edition of this first-hand detailed account of French foreign policy diplomacy and the events leading to World War I. Octavo the first three volumes out of four original publisher's cloth with gilt titles to the spines facsimile signature of Raymond Poincaré stamped in gilt to the front panels tissue-guarded frontispiece to volume one. Boldly signed and dated 1928 by Raymond Poincaré on the front free endpaper of volume one. In very good condition. Translated and adapted by Sir George Arthur. Preface by the Duke of Northumberland K.G. The Memoirs of Raymond Poincaré translated and adapted into English by Sir George Arthur present the reflections of the French statesman who served as President of France from 1913 to 1920 during the critical years of the First World War. Originally written by Poincaré as a detailed political record of diplomacy wartime leadership and international negotiations the memoirs offer insight into the strategic decisions and alliances that shaped the conflict and its aftermath. Sir George Arthur’s English adaptation made these writings accessible to a broader readership preserving Poincaré’s account of French policy his interactions with Allied leaders and his interpretation of the diplomatic tensions that preceded the war. Doubleday, Page & Company hardcover
1913012487Paris: Gauthier-Villars. Nicely bound in half dark green leather with mottled green paper-covered boards. Top edges gilt. iv 370 1 pp. Bookplate previous owner's name in neat blue pencil a few very slight scuff marks on the leather else Very Good Plus. Nice copy. . Very Good. Hardcover. First Edition. 1913. Gauthier-Villars hardcover
1913157980Paris : A. Hermann 1913. In-8 gr. mezza pergamena con angoli coeva brossura editoriale conservata pp. LXX 294 con una fotografia allantiporta che raffigura Henri Poincaré e illustrazioni in bianco e nero nel testo.Buon esemplare. A. Hermann, unknown
1909H18745Paris: Gauthier-Villars 1909. First printing. Hardcover. Very Good. 9.5 x 6.25 inches publisher's wraps Part 1 is good with moderate wear and tanning to wraps contents very good Part 2 is very good with lighter wear to wraps. 165 & 136 pp. Gauthier-Villars hardcover
1912464021Paris : Plon-Nourrit et Cie 1912. First Edition. Hardcover. Very good set finely bound in quarter red aniline calf over fine-ribbed salmon cloth boards now lightly sun-toned at the margins. Spines with gilt titles and raised bands now somewhat rubbed along with the extremities. Top edges gilt. Fore- and bottom edges preliminary and final leaves foxed with the interior showing faint foxing to the margins only. Chiefly unread with unopened pages. A well-preserved set overall. Physical description; 7 volumes : plates portraits ; 22 cm. Notes; This set comprises the first seven volumes printed through 1915. A further four volumes were subsequently published in the series. Includes bibliographical references. Contents: I. Le lendemain d'Agadir 1912 — II. Les Balkans en feu 1912 — III. L'Europe sous les armes 1913 — IV. L'Union sacrée 1914 — V. L'invasion 1914 — VI. Les tranchées 1915 — VII. Guerre de siège 1915. Subjects; World War 1914-1918 France. World War 1914-1918 Diplomatic history. France Foreign relations 1870-1940. France Politics and government 1870-1940. Presidents France Biography. Prime ministers France Biography. Europe Politics and government 1871-1918. Paris : Plon-Nourrit et Cie hardcover
1907000013575New York: The Science Press 1907. First American edition. Hardcover. Very Good. 8vo. 4 iii 1 1-147 1 pp. Navy cloth with a border in blind on each board gold lettering and two gold rules on the spine. Authorized translation with an introduction by George Bruce Halsted. With a special prefatory essay. Part of the Library of Philosophy Psychology and Scientific Methods series edited by J. McKeen Cattell. A moving work from the pioneering polymath. A small concavity to the spine a few pencil annotations. A bookseller's ticket from Ideal Bookstore which was on Amsterdam Avenue in New York City. The Science Press hardcover