38 résultats
185443057Leipzig, Johann Ambrosius Barth, 1854. No wrappers as extracted from: ""Annalen der Physik und Chemie. Hrsg. von J.C. Poggendorff"", Vierte Reihe Bd. 3, (= Poggendorff Bd. 93, No. 12). Pp. 481-506. Clean and fine.
185444808Leipzig, Johann Ambrosius Barth, 1854. No wrappers in ""Annalen der Physik und Chemie. Hrsg. von J.C. Poggendorff"", Bd. 93, No 12 (entire issue offered). Titlepage to vol. 93. Pp. 481-632. Clausius's paper pp. 481-506.
185446907Leipzig, Johann Ambrosius Barth, 1854. Contemp. marbled boards. In: ""Annalen der Physik und Chemie. Hrsg. von J.C. Poggendorff"", Vierte Reihe Bd. 3, (= Poggendorff Bd. 93,). Entire volume offered. Two stamps to titlepage. X,632 pp. and 4 folded engraved plates. Clausius's paper: pp. 481-506. Internally clean and fine.
182143750(Paris, Crochard, 1821). No wrappers. In: ""Annales de Chimie et de Physique, Par MM. Gay-Lussac et Arago."", tome 18 (Septembre Cahier). Pp. 337-443. (Entire issue offered). Faraday's paper: pp. 337-370 a. 2 folded engraved plates (showing the experimental apparatus). Ampère & Savary's Notes: pp. 370-379. Clean and fine.
182243751Leipzig, Johann Ambrosius Barth, 1822. Without wrappers as extracted from ""Annalen der Physik und der Physikalischen Chemie. Hrsg. Ludwig Wilhelm Gilbert"", Bd. 71. Titlepage to vol. 71, pp. 124-171 a. pp. 172-176 and 1 folded engraved plate showing experimental apparatus. Clean and fine.
180542938(London, W. Bulmer and Co., 1805). 4to. No wrappers as extracted from ""Philosophical Transactions"" 1805 - Part II. Pp. 233-256 a. 1 engraved plate, folded. Clean and fine.
180545882(London, W. Bulmer and Co., 1805). 4to. No wrappers as extracted from ""Philosophical Transactions"" 1805 - Part II. Pp. 233-256 a. 1 engraved plate, folded. Clean and fine.
186142131861 1861 Michel Levy Frères, Paris, 1861. 1 vol. petit in-folio, reliure d'éditeur pleine percaline noire, dos et plat supérieur décorés, du 6 décembre 1960 eu 28 novembre 1861, 414 pp., texte sur deux colonnes, illustrations in-texte. Bel exemplaire
184844430Firmin Didot 1848 In-8, demi-basane, dos lisse, filets dorés, 497 pp. Tetxe sur deux colonnes. 22 planches hors-texte dont une carte repliée. Dos usé et fotté. Int. frais
1849lit1413mgrand in 8 (26x17cm), relié, 126pp. Edition originale illustrée de 80 gravures hors texte. Chaque pièce possède une gravure sur acier et une sur bois. Les noms sur les gravures sont Geofffroy, Verdeil, Rouargue, Harvey, mais la plupart des aciers très beaux et très fins, à l'imagination souvent délirante, ne sont pas signés. Cartonnage d'éditeur Bleu marine en pleine percaline aux motifs dorés , dos très orné d'un entrelac géométrique et d'un feuillage , sur les plats un grand encadrement romantique à froid et deux motifs différents, un représentant Falstaff et l'autre une composition avec une lyre, une médaille… Un feuillet très légèrement ressorti. Edtions Baudry
184662921846 Paris Firmin Didot 1846 (l'univers pittoresque) in 8 cartonnage de l'époque, 108 pages sur 2 colonnes + 21 planches et cartes hors texte
19003897Bruxelles, Balat, 1900 ; deux tomes in-12, brochés ; 252pp. ; 230pp.
180111416Paris Boiste, Agasse, Deterville 1801 Un volume in-8 demi veau havane à petits coins, dos lisse orné de frises dorées, pièce de titre en chagrin beige, [bl.], frontispice, titre, xii, 478 pages, [bl.], 5 planches hors-texte. Plats frottés, infime manque en tête, petit manque de papier au feuillet de titre, une petite mouillure claire en marge en début d'ouvrage, bel exemplaire néanmoins.
185443057Leipzig Johann Ambrosius Barth 1854. No wrappers as extracted from: "Annalen der Physik und Chemie. Hrsg. von J.C. Poggendorff" Vierte Reihe Bd. 3 = Poggendorff Bd. 93 No. 12. Pp. 481-506. Clean and fine. <br/><br/><em>First printing of this milestone paper in thermodynamics which together with his paper from 1850 established the second law of thermodynamics. In the offered paper Clausius introduces the symbol T for the universal function of temperature a 1 and he introduces the concept of "entropy" the greek word for 'transformation' but without using the word Clausius introduced the word later in 1865 he calls this new theorem "the principle of the equivalence of transformations". This principle paints a dramatic picture of the end of the world the so-called "heath-death of the universe"."Entropy on the other hand of the complementary experience of water seeking its own level of hot bodies cooling of springs untensing of magnetism wearing off and electrical charges leaking away of a destiny suchThat no life lives forever; - That dead men rise up never; that even the weariest river Winds somewhere safe to sea: a world getting old and running down."Gillespie in "The edge of Objectivity" p. 400-01."Clausius discovered that if he took the ratio of the heat content of a system and its absolute temperature this ration would always increase in any process taken place in a closed system. A closed system is one that loses no energy to the outside world and gains no energy from it. With perfect efficiency which is never realized in the real world of course the ratio would remain constant but i would never under any circumstances decrease."Asimov. - Parkinson: Breakthroughs 1854 C. </em> unknown
185444808Leipzig Johann Ambrosius Barth 1854. No wrappers in "Annalen der Physik und Chemie. Hrsg. von J.C. Poggendorff" Bd. 93 No 12 entire issue offered. Titlepage to vol. 93. Pp. 481-632. Clausius's paper pp. 481-506. <br/><br/><em>First printing of this MILESTONE PAPER IN THERMODYNAMICS which together with his paper from 1850 established the second law of thermodynamics. In the offered paper Clausius introduces the symbol T for the universal function of temperature a 1 and he introduces the concept of "entropy" the greek word for 'transformation' but without using the word Clausius introduced the word later in 1865 he calls this new theorem "the principle of the equivalence of transformations". This principle paints a dramatic picture of the end of the world the so-called "heath-death of the universe"."Entropy on the other hand of the complementary experience of water seeking its own level of hot bodies cooling of springs untensing of magnetism wearing off and electrical charges leaking away of a destiny suchThat no life lives forever; - That dead men rise up never; that even the weariest river Winds somewhere safe to sea: a world getting old and running down."Gillespie in "The edge of Objectivity" p. 400-01."Clausius discovered that if he took the ratio of the heat content of a system and its absolute temperature this ration would always increase in any process taken place in a closed system. A closed system is one that loses no energy to the outside world and gains no energy from it. With perfect efficiency which is never realized in the real world of course the ratio would remain constant but i would never under any circumstances decrease."Asimov. - Parkinson: Breakthroughs 1854 C. </em> unknown
185446907Leipzig Johann Ambrosius Barth 1854. Contemp. marbled boards. In: "Annalen der Physik und Chemie. Hrsg. von J.C. Poggendorff" Vierte Reihe Bd. 3 = Poggendorff Bd. 93. Entire volume offered. Two stamps to titlepage. X632 pp. and 4 folded engraved plates. Clausius's paper: pp. 481-506. Internally clean and fine. <br/><br/><em>First printing of this milestone paper in thermodynamics which together with his paper from 1850 established the second law of thermodynamics. In the offered paper Clausius introduces the symbol T for the universal function of temperature a 1 and he introduces the concept of "entropy" the greek word for 'transformation' but without using the word Clausius introduced the word later in 1865 he calls this new theorem "the principle of the equivalence of transformations". This principle paints a dramatic picture of the end of the world the so-called "heath-death of the universe"."Entropy on the other hand of the complementary experience of water seeking its own level of hot bodies cooling of springs untensing of magnetism wearing off and electrical charges leaking away of a destiny suchThat no life lives forever; - That dead men rise up never; that even the weariest river Winds somewhere safe to sea: a world getting old and running down."Gillespie in "The edge of Objectivity" p. 400-01."Clausius discovered that if he took the ratio of the heat content of a system and its absolute temperature this ration would always increase in any process taken place in a closed system. A closed system is one that loses no energy to the outside world and gains no energy from it. With perfect efficiency which is never realized in the real world of course the ratio would remain constant but i would never under any circumstances decrease."Asimov. - Parkinson: Breakthroughs 1854 C. </em> hardcover
19003894Paris, Librairie des Sciences Psychiques, 1900 ; in-12, broché ; (4) ff. 424 pp.
184634033Paris, Didot, 1846 in-8° In-8, 440 pp, 32 planches. Relié dos toile parme .
1887CZC-13579complet en 2 vols, reliés 180x120, bon état intérieur, 382 & 359p Paris, Librairie Germer-Baillière et Cie, 1887 ref/185
1887CZC-13579complet en 2 vols, reliés 180x120, bon état intérieur, 382 & 359p Paris, Librairie Germer-Baillière et Cie, 1887 ref/185
182143750Paris Crochard 1821. No wrappers. In: "Annales de Chimie et de Physique Par MM. Gay-Lussac et Arago." tome 18 Septembre Cahier. Pp. 337-443. Entire issue offered. Faraday's paper: pp. 337-370 a. 2 folded engraved plates showing the experimental apparatus. Ampère & Savary's Notes: pp. 370-379. Clean and fine. <br/><br/><em>First French edition of Faraday's famous paper "On some new Electro-Magnetical Motion and on the Theory of Magnetism. By Michael Faraday Chemical Assistant in the Royal Institution. 1821" recording one of the most influential discoveries in physics in the 19th Century as Faraday here as the very first showed how to CONVERT THE ELECTRICAL AND MAGNETIC FORCES INTO CONTINUAL MECHANICAL MOVEMENT thus creating the first electric motor using the principle of electromagnetic rotation. In the first paper he introduced for the first time the concept of "LINE OF FORCE" and hereby deliniating "a picture of the universe as consisting of fields of various types one that was more subtle flexible and useful than the purely mechanical picture of Galileo and Newton. The FIELD UNIVERSE was to be recognized with Maxwell half a century later and with Einstein after an interval of another halfcentury."Asimov."Ever since Hans Christian oersted's announcement of the discovery of electromagnetism in the summer of 1820 editors of scientific journals had been inundated with articles on the phenomenon. Theories to explain it had multiplied and the net effect was confusion. Were all the effects reported real Did the theories fit the facts It was to answer these questions that Phillips turned to Faraday and asked him to review the experiments and theories of the past months and separate truth from fiction.Faraday agreed to to undertake a short historical survey.His entusiasm was aroused in September 1821 when he turned to the investigation of the peculiar nature of the magnetic force created by an electrical current. Oersted had spoken of the "electrical conflict" surrounding the wiree and had noted that "this conflict performs circles".Yet as he experimented he saw precisely what was happening. Using a small magnetic needle to map the pattern of magnetic force he noted that oneof the poles of the needle turned in a circle as it was carried around the wire. He immediately realized that a single magnetic pole would rotate unceasingly around a current-carrying wire so long as the current flowed. He then set about devising an instrument to illustrate this effect. His paper "On some new Electro-Magnetical Motion and on the Theory of Magnetism" appeared in the 21 October 1821 issue of the "Quarterly Journal of Science" The paper offered in the first French edition. It records the first conversion of electrical into mechanical energy. It also contained the first notion of the line of force."DSB IV pp. 533. </em> unknown
182243751Leipzig Johann Ambrosius Barth 1822. Without wrappers as extracted from "Annalen der Physik und der Physikalischen Chemie. Hrsg. Ludwig Wilhelm Gilbert" Bd. 71. Titlepage to vol. 71 pp. 124-171 a. pp. 172-176 and 1 folded engraved plate showing experimental apparatus. Clean and fine. <br/><br/><em>First German edition of Faraday's famous paper "On some new Electro-Magnetical Motion and on the Theory of Magnetism. By Michael Faraday Chemical Assistant in the Royal Institution. 1821" recording one of the most influential discoveries in physics in the 19th Century as Faraday here as the very first showed how to CONVERT THE ELECTRICAL AND MAGNETIC FORCES INTO CONTINUAL MECHANICAL MOVEMENT thus creating the first electric motor using the principle of electromagnetic rotation. In the first paper he introduced for the first time the concept of "LINE OF FORCE" and hereby deliniating "a picture of the universe as consisting of fields of various types one that was more subtle flexible and useful than the purely mechanical picture of Galileo and Newton. The FIELD UNIVERSE was to be recognized with Maxwell half a century later and with Einstein after an interval of another halfcentury."Asimov."Ever since Hans Christian oersted's announcement of the discovery of electromagnetism in the summer of 1820 editors of scientific journals had been inundated with articles on the phenomenon. Theories to explain it had multiplied and the net effect was confusion. Were all the effects reported real Did the theories fit the facts It was to answer these questions that Phillips turned to Faraday and asked him to review the experiments and theories of the past months and separate truth from fiction.Faraday agreed to to undertake a short historical survey.His entusiasm was aroused in September 1821 when he turned to the investigation of the peculiar nature of the magnetic force created by an electrical current. Oersted had spoken of the "electrical conflict" surrounding the wiree and had noted that "this conflict performs circles".Yet as he experimented he saw precisely what was happening. Using a small magnetic needle to map the pattern of magnetic force he noted that oneof the poles of the needle turned in a circle as it was carried around the wire. He immediately realized that a single magnetic pole would rotate unceasingly around a current-carrying wire so long as the current flowed. He then set about devising an instrument to illustrate this effect. His paper "On some new Electro-Magnetical Motion and on the Theory of Magnetism" appeared in the 21 October 1821 issue of the "Quarterly Journal of Science" The paper offered in the first German edition. It records the first conversion of electrical into mechanical energy. It also contained the first notion of the line of force."DSB IV pp. 533. </em> unknown
18903935Paris, E. Flammarion, sans date (circa fin XIXe sièce) ; in-12 ; demie-basane aubergine, dos à nerfs orné de fleurons dorés, titre doré (reliure de l'époque) ; 252 pp.
1820CCC0008fmb. JANET ET COTELLE, 1820. Couverture rigide. État : Très bon. In-8 (13.5 X 21.5 cm) Reliure demi chagrin d'époque, coins et dos legerement frottés et 408 pages, 2 planches de gravures en noir et blanc hors-texte, gravées par Ambroise Tardieu. Titre, filets et fleurons dorés sur le dos en cuir marron clair. Quelques rousseurs
1896LFA-126722028Un ouvrage de 313 pages, format 150 x 230 mm, illustré, broché, publié en 1896, Gauthier-Villars et Fils Imprimeurs-Libraires (Paris), bon état