Lebedev p n (15 Ergebnisse)

Sprache: Englisch
Verlag: Editions Frontieres, Cedex, Editions Frontieres, 1991. 1991
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Hardcover. Zustand: Fine. HARDBACK original printed pictorial boards pages: 730 many b&w photographs 152mm x 224mm (6 x 8.75") ex-academic library with usual plates and marks small label on slightly faded spine head and tail very lightly bumped.
Verlag: Editions Frontieres, Gif-sur-yvette Cedex, Fr. 1991
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Hardcover. Zustand: Good. No Dust Jacket. 8vo, 730pp, White glossy boards with photo of Sakharov on front. Spine a bit worn and creased due to large text block. This book is a collection of tributes written by his fellow physicists and colleagues about a year after his death. GOOD/--, Covers and edges a bit soiled, shelf-worn, e…dges bumped; 8vo - over 7¾ - 9¾" tall. Illustrated by Black and White Phots (illustrator).

Worked Problems in Applied Mathematics. With a supplement by Edward L. Reiss.
Lebedev, N.N., Skal'skaya, I.P., Uflyand, Y.S., Silverman, Richard A. (ed.), Reiss, Edward L. (ed.)
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21 x 14 cm, paperback, xiv, 430 pages, Text in English, minor wear, very good condition, see picture. Unabridged republication of the 1965 English edition translated and edited by Richard A. Silverman. Supplement contributed by Edward L. Reiss. Contains worked problems in applied mathematics originally published in Moscow. 460g.
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leaves and chloroplasts by Difference Fluorescence Spectroscopy at 77 K (S. A. Photosynthetica 19, 2) 1985. S. 183 - 187. m. zahlr. Abb. br. -2) Sonderabdruck Offprint.
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Fluorescence Spectrum changes during ntogeny of Primary leaves of Phaseolus vulgaris L. (S. A. Photosynthetica 20, 2) 1986. S. 146 - 152. m. zahlr. Abb. br. -2) Sonderabdruck Offprint.
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during Ontogeny of Primary Bean Leaves (S. A. Photosynthetica 19, 2) 1985. S. 127 - 137. m. zahlr. Abb. (U.) br. -2) Sonderabdruck Offprint.

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Zustand: Good. 1st. Former library copy. Pages intact with minimal writing/highlighting. The binding may be loose and creased. Dust jackets/supplements are not included. Includes library markings. Stock photo provided. Product includes identifying sticker. Better World Books: Buy Books. Do Good.

Verlag: Energoatomizdat 1986
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Hardcover/Hardback. Zustand: Good. Vpervye sistematizirovany dannye, kharakterizuyushchie izmenenie svojstv i povedenie organicheskikh materialov polimerov, kompozitsionnykh materialov, organicheskikh zhidkostej i dr. pod dejstviem ioniziruyushchikh izluchenij v zavisimosti ot dozy, moshchnosti dozy, vida izluchenij, uslovij obl…ucheniya i drugikh faktorov. Privedeny radiatsionno-khimicheskie vykhody i konstanty skorosti reaktsij promezhutochnykh aktivnykh chastits. Kolichestvenno okharakterizovany ra-diatsionno-khimicheskie prevrashcheniya polimerov i organicheskikh zhidkostej. Rassmotreny radiatsionnye izmeneniya elektrofizicheskikh, teplofizicheskikh, mekhanicheskikh, opticheskikh svojstv organicheskikh materialov.Dlya nauchnykh i inzhenerno-tekhnicheskikh rabotnikov.

Verlag: RGGU 2019
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Zustand: new. Pages: 237 Language: Russian. 9785728125518.
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(S. A. Photosynthetica 21, 1) 1987. S. 23 - 28. m. zahlr. Abb. geklammert -2) Sonderabdruck Offprint.
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Complexes and Chloroplast Ultrastructure during Yellowing of Leaves (S. A. Photosynthetica 25, 3) 1991. S. 395 - 407. m. zahlr. Abb. geklammert -2) Sonderabdruck Offprint.

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Zustand: New. Reviews the developments in conformal quantum field theory in D-dimensions. This work aims to give a survey of some special aspects of conformal quantum field theory in D-dimensional space. It is suitable for graduate students and researchers whose work involves quantum field theory. Series: Mathematics and its App…lications. Num Pages: 466 pages, biography. BIC Classification: PHQ. Category: (P) Professional & Vocational. Dimension: 234 x 156 x 26. Weight in Grams: 851. . 1996. Hardback. . . . . Books ship from the US and Ireland.
Verlag: Sandia National Laboratories, Albuquerque, NM 2010
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Spiralbound. Zustand: Very good. Presumed first edition/first printing. 53 p. Includes illustrations. References. Some illustrations in color. The distribution list consists of about 80 copies. Authors continue: Hall, Gareth N., and Suzuki-Vidal, Fracisco; and CUneo, Michael E., and Rogers, TJ, and Cleveland, Monica; and McBride…, Ryan D., and Serrano, Jason D.; and Peyton, Brad; and Coverdale, Christine A., and Jones, Michael C., and Jones, Brent M. The authors are affiliated with Sandia National Laboratories and the Blackett Laboratory, Imperial College London. Radial wire arrays provide an alternative x-ray source for Z-pinch driven Intertial Confinement Fusion (ICF). These arrays, where wires are positioned radially outward from a central cathode to a concentric anode, have the potential to drive a more compact ICF hohlraum and may be of interest in opacity experiments. These arrays are also shown to have applications to jet production for laboratory astrophysics.
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Leipzig, Ambrosius Barth, 1901. 8vo. Bound in a nice contemporary half calf with red leather title label and gilt lettering to spine. In "Annalen der Physik", Vol. 6, 1901. Entire volume offered. Stamp to lower part of title-page. Upper front hindge with 3 cm long tear. otherwise a fine copy. Pp. 433-58. [Entire volume: VIII, 87…6 pp. + 3 folded plates]. First appearance of the account of Lebedev's seminal experiment proving that light exerts a mechanical pressure on material bodies thereby confirming Maxwell's electromagnetic theory for the very first time - a landmark discovery in modern physics. James Clerk Maxwell "made an important new prediction from his electromagnetic theory-that electromagnetic waves exert a radiation pressure. Bright sunlight, he calculated, presses on the earth's surface with a force of around 4 pounds per square mile [.] This was too tiny a value to be observable in everyday life and its detection posed a challenge to experimenters. Eventually, in 1900, the Russian physicist Pyotr Lebedev succeeded, and confirmed James' prediction. Although small on an earthly scale, radiation pressure is one of the factors that shape the universe. Without it there would be no stars like our sun. [The] discovery also helped to explain a phenomenon that had puzzled astronomers for centuries-why comets' tails point away from the sun" (Mahan, The Man who Changed Everything: The Life of James Clerk Maxwell, 183)."As early as 1891 Lebedev became seriously interested in the pressure of light. He turned his attention to the fact that since the force of gravity is proportional to the volume of a body whereas light pressure must be proportional to its surface, it may be asserted that in a particle of cosmic dust the forces of light pressure pushing the particle away from the sun will be equals to the force of gravity attracting it toward the sun. Lebedev used this theory to explain why comets'tails always point away from the sun. His hypothesis was considered correct until the discovery of the solar wind, which creates substantially greater pressure than the sun's light.Around 1898, Lebedev began experimental research on light pressure. Although its presence had been predicted by Maxwell's theory, it had not been detected experimentally before Lebedev. He first undertook research on the pressure of light on solid bodies. Because of the weakness of the effect itself and the considerable number of possible side effects, this experimental problem presented very great difficulties: if a body that is supposed to react to light pressure is placed in a gas, the warming of the body by the light will inevitably cause convection currents and thus set the body in motion. If the body is placed in a vacuum (in practice, in gas at very low pressure), the so called radiometric effect will occur. As a result of the uneven warming of the front and back of the body, the molecules of gas hitting the body from the front will be repulsed more forcefully than those striking the back, thereby exerting greater pressure. By extremely ingenious methods Lebedev succeeded in completely eliminating these side effects and not only detected the pressure of light but also measured it and showed the correctness of Maxwell's quantitative theory. "Opytnoe issledovanie svetovogo davlenia"("An Experimental Investigation of the Pressure of Light") was read by Lebedev at the International Congress of Physicists at Paris in 1899 and was published in 1901." (DSB).
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Leipzig, Barth, 1901. 8vo. Bound in full black cloth with gilt lettering to spine. In "Annalen der Physik", Vol. 6, 1901. Entire volume offered. Library labels pasted on to front end papers, stamp to title page, otherwise a fine copy. Pp. 433-58. [Entire volume: VIII, 876 pp. + 3 folded plates]. First appearance of the account o…f Lebedev's seminal experiment proving that light exerts a mechanical pressure on material bodies thereby confirming Maxwell's electromagnetic theory for the very first time - a landmark discovery in modern physics. James Clerk Maxwell "made an important new prediction from his electromagnetic theory-that electromagnetic waves exert a radiation pressure. Bright sunlight, he calculated, presses on the earth's surface with a force of around 4 pounds per square mile [.] This was too tiny a value to be observable in everyday life and its detection posed a challenge to experimenters. Eventually, in 1900, the Russian physicist Pyotr Lebedev succeeded, and confirmed James' prediction. Although small on an earthly scale, radiation pressure is one of the factors that shape the universe. Without it there would be no stars like our sun. [The] discovery also helped to explain a phenomenon that had puzzled astronomers for centuries-why comets' tails point away from the sun" (Mahan, The Man who Changed Everything: The Life of James Clerk Maxwell, 183)."As early as 1891 Lebedev became seriously interested in the pressure of light. He turned his attention to the fact that since the force of gravity is proportional to the volume of a body whereas light pressure must be proportional to its surface, it may be asserted that in a particle of cosmic dust the forces of light pressure pushing the particle away from the sun will be equals to the force of gravity attracting it toward the sun. Lebedev used this theory to explain why comets'tails always point away from the sun. His hypothesis was considered correct until the discovery of the solar wind, which creates substantially greater pressure than the sun's light.Around 1898, Lebedev began experimental research on light pressure. Although its presence had been predicted by Maxwell's theory, it had not been detected experimentally before Lebedev. He first undertook research on the pressure of light on solid bodies. Because of the weakness of the effect itself and the considerable number of possible side effects, this experimental problem presented very great difficulties: if a body that is supposed to react to light pressure is placed in a gas, the warming of the body by the light will inevitably cause convection currents and thus set the body in motion. If the body is placed in a vacuum (in practice, in gas at very low pressure), the so called radiometric effect will occur. As a result of the uneven warming of the front and back of the body, the molecules of gas hitting the body from the front will be repulsed more forcefully than those striking the back, thereby exerting greater pressure. By extremely ingenious methods Lebedev succeeded in completely eliminating these side effects and not only detected the pressure of light but also measured it and showed the correctness of Maxwell's quantitative theory. "Opytnoe issledovanie svetovogo davlenia"("An Experimental Investigation of the Pressure of Light") was read by Lebedev at the International Congress of Physicists at Paris in 1899 and was published in 1901." (DSB).