Lugduni Lugduni, 1658, en réalité Paris 1793. In-18 relié pleine basane brune, dos lisse à filets dorés, pièce de titre bordeaux. 172 pages, avec signet de tissu. Petits frottements à la reliure, coiffe présentant un petit manque de cuir, coiffe inférieure arasée, coins émoussés, petite galerie de vers en partie inférieure du mors du deuxième plat sur 2 cm. Tache brune en page de titre allant en s'estompant sur les suivantes jusqu'à ne plus être à partir de la page 30, texte à bonnes marges. Bibliographie : Brunet I/189-190. Ouvrage rare, portant une mention fausse d'édition, édité à Paris en 1793 pour ce pamphlet anglais contre Cromwell. William Allen ne serait qu'un pseudonyme.
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Oxford, New York, Oxford University Press, 1990.
XV,297 p. Paperback. 20 cm
Berkeley etc., University of California Press, CUP, 1954. (And:) Groningen, Bouma, 1971.
2 volumes: XI,686; XX,52 p. Cloth. Volume 1: green cloth and 26 cm, volume 2: black cloth and 29 cm) (Back of first volume faded) (Heavy book, may require extra shipping costs)
London, Macmillian and Co, 1938. Royal8vo. In contemporary half cloth with white paper title-label pasted on to spine. In: ""Nature"", January - June, 1939, Vol. 141, entire volume offered. Stamp to front free end-paper and title-page, otherwise fine and clean copy. P. 74"" P. 75. [Entire volume: LXIV, 1156 pp.].
First publication of these two seminal papers which constitutes one of the most significant discoveries in 20th century physics. It ushered a golden period of low-temperature physics and created a new research field within physics which was later to be called quantum liquids. Both paper described a hitherto unknown state of matter: superfluidity of matter. The two discoveries were made independently, Kapitza's paper superseding Allen and Misener's by two weeks. Both studies reported that liquid helium flowed with almost no measurable viscosity below the transition temperature of 2.18 K.""Although the discovery of superfluidity stands as one of the most significant in physics in the 20th century, it was to be 40 years before the Royal Swedish Academy of Sciences honoured this seminal discovery with a Nobel prize - an exceptionally long interval. In 1978 Kapitza, by then 84, was given half of that year's Nobel Prize for Physics with a somewhat vague citation reading ""for his basic inventions and discoveries in the area of low-temperature physics"". The other half did not go to Allen and Misener. Today, science popularizers generally give sole credit for the discovery of superfluidity to Kapitza."" (Physics world, University of Toronto.). ""Kapitza observed that He II flowed between two closely spaced parallel plates extremely rapidly compared to He I, for the same pressure difference. This result, published in Nature on 8 January 1938, showed unambiguously that here was a new and mysterious kind of liquid - one with almost no viscosity. On the page facing Kapitza's one-page paper was another by the young Canadian physicists Jack Allen and Donald Misener, with essentially equivalent results on helium flow on long capillary tubes. It was submitted two weeks after Kapitza's, but both papers are the standard reference for the discovery of superfluidity"". (Griffin, A Century of Nature, 2003, p. 52).While investigating the thermal conductivity of liquid helium, Kapitsa measured the flow as the fluid flows through a gap between two discs into a surrounding bath. Above the lambda point, there was little flow, but below the lambda temperature, the liquid flowed with such great ease that Kapitsa drew an analogy with superconductors. It was a liquid of zero viscosity. He discovered the phenomenon in 1937 and published a paper about it in Nature in January 1938. He wrote: ""The helium below the lambda point enters a special state that might be called a ‘superfluid.’"" (DSB).Today the theory behind superfluidity is widely used within a broad variety of different subject such as spectroscopic and in high-precision devices as gyroscopes which allow the measurement of some theoretically predicted gravitational effects. In 1999, a type of superfluid was used to trap light and greatly reduce its speed. Light was passed through a Bose-Einstein condensed gas of sodium (superfluid) and found to be slowed to 17 m/s from its normal speed of 299,792,458 metres per second.Brandt, The Harvest of a Century, Pp. 254-7.
New York, Macmillian and Co, 1938. Royal8vo. In publisher's pictorial cloth with the original wrappers [in the back]. Gilt lettering and Nature's logo to spine and front board. Entire issue of ""Nature"", January - June, 1938, Vol. 141. ""Emmanuel College"" in gilt lettering to spine and two library stamps to title-page and first index page. Two small white paper labels pasted on to spine and a small tear to top of spine. Very slight wear to extremities, otherwise a very fine and clean copy. Rare in the publisher's binding. P. 74"" P. 75. [Entire volume: LXIV, 1156 + VIII, IV, VIII, VIII, XVI, VIII, VIII, XVI, VIII, XII, VIII, XII, XII, IV, IV, VIII, XII, VIII, VIII, VIII, VIII, XII, VIII, IV, XVI, CCLX (Advertisements).
First publication of these two seminal papers which constitutes one of the most significant discovery in 20th century physics. It ushered a golden period of low-temperature physics and created a new research field within physics which was later to be called quantum liquids. Both paper described a hitherto unknown state of matter: superfluidity of matter. The two discoveries were made independently, Kapitza's paper superseding Allen and Misener's by two weeks. Both studies reported that liquid helium flowed with almost no measurable viscosity below the transition temperature of 2.18 K.""Although the discovery of superfluidity stands as one of the most significant in physics in the 20th century, it was to be 40 years before the Royal Swedish Academy of Sciences honoured this seminal discovery with a Nobel prize - an exceptionally long interval. In 1978 Kapitza, by then 84, was given half of that year's Nobel Prize for Physics with a somewhat vague citation reading ""for his basic inventions and discoveries in the area of low-temperature physics"". The other half did not go to Allen and Misener. Today, science popularizers generally give sole credit for the discovery of superfluidity to Kapitza."" (Physics world, University of Toronto.). ""Kapitza observed that He II flowed between two closely spaced parallel plates extremely rapidly compared to He I, for the same pressure difference. This result, published in Nature on 8 January 1938, showed unambiguously that here was a new and mysterious kind of liquid - one with almost no viscosity. On the page facing Kapitza's one-page paper was another by the young Canadian physicists Jack Allen and Donald Misener, with essentially equivalent results on helium flow on long capillary tubes. It was submitted two weeks after Kapitza's, but both papers are the standard reference for the discovery of superfluidity"". (Griffin, A Century of Nature, 2003, p. 52).While investigating the thermal conductivity of liquid helium, Kapitsa measured the flow as the fluid flows through a gap between two discs into a surrounding bath. Above the lambda point, there was little flow, but below the lambda temperature, the liquid flowed with such great ease that Kapitsa drew an analogy with superconductors. It was a liquid of zero viscosity. He discovered the phenomenon in 1937 and published a paper about it in Nature in January 1938. He wrote: ""The helium below the lambda point enters a special state that might be called a ‘superfluid.’"" (DSB).Today the theory behind superfluidity is widely used within a broad variety of different subject such as spectroscopic and in high-precision devices as gyroscopes which allow the measurement of some theoretically predicted gravitational effects. In 1999, a type of superfluid was used to trap light and greatly reduce its speed. Light was passed through a Bose-Einstein condensed gas of sodium (superfluid) and found to be slowed to 17 m/s from its normal speed of 299,792,458 metres per second.Brandt, The Harvest of a Century, Pp. 254-7.
Cahiers du Cinéma Cahiers du Cinéma, 1993. Grand In-4 carré relié cartonnage éditeur sous jaquette de 188 pages ornées de nombreuses photos. Bon état
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Nashville, Vanderbilt University Press, 1971.
IX,176 p. Cloth 24 cm
Bruxelles, 1988.
42 p. Wrs. (Offpr. Byzantion, 58, 1988)(t. & tr.)
Berkeley etc., University of California Press, 1999.
XIII,409 p., illustrations. Hardbound. 23.5 cm (Including dustjacket)
Berkeley etc., University of California Press, 1999.
XIII,409 p., illustrations. Hardbound. 23.5 cm (Including dustjacket)
printed for the Muséum Cambridge, printed for the Museum,1939. Fort In-8 relié demi-toile beige de 763 pages. Manque au dos au niveau du titre, sans gravité. Bon état.
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Errance Paris, Errance, 1986. In-8 relié plein cartonnage éditeur de 132 pages, nombreuses figures en noir et blanc. Bon état
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Gallimard Paris, Gallimard 1966. In-8 broché, couverture rempliée de 232 pages. Très bon état
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Tallandier Tallandier, 2021. In-12 broché de 413 pages. Collection Texto. Très bon état
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T & T Clark T & T Clark, 1957. In-8 pleine reliure de toile verte éditeur, titre doré en dos de XCVI + 352 pages. Très bon état
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Watson Guptill publications Watson Guptill publications, 1980. In-8 carré relié pleine toile éditeur, sous jaquette illustrée rempliée de 127 pages. Nombreuses photos et plans, en noir et en couleurs - dans et hors-texte. Très bon état
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Grand livre du mois Grand Livre du Mois, 2005. In-8 relié cartonnage souple éditeur de 352 pages. Rares passages discrètement soulignés au crayon de papier sinon Très bon état.
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Seuil Seuil 2009. In-8 broché de 143 pages. Parfait état
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Paris, First interactive, 2007 ; in-4, 373 pp., br. Broché comme neuf.
Broché comme neuf.
Cahiers du Cinéma 2002 Cahiers du Cinéma 2002, petit In-4 cartonnage éditeur sous jaquette illustrée. 384 pages. Photos. Trés bel état.
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Paris, France loisirs, 1995 ; in-4, 128 pp., cartonnage de l'éditeur. Comme neuf - mesurez-vous a plus de 100 casse-tête (presque) insolubles !
Comme neuf - mesurez-vous a plus de 100 casse-tête (presque) insolubles !
, Les presses du management , 1994 ; in-8, 79 pp., broché, couverture illustr.
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Allen G. Taylor. SQL for kettles. In Russian /Allen G. Teylor. SQL dlya chaynikov. 6th edition. M. Williams 2010 352s. You are welcome to reach out to us for a detailed description of the copies currently available. Delivery of this book may take longer than usual including extended processing and pre-shipping time, no expedited shipping is available. Please advise us if you have a set date or a deadline to receive your order.SKUalb4bedd2de20ed38cc