Gell mann m murray (5 resultados)
Last of the Curlews
Bodsworth, Fred, and Gell-Mann, Murray, Professor (Afterword by), and Merwin, W S (Foreword by)
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Librería: 2Vbooks, Derwood, MD, Estados Unidos de America2Vbooks
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Hard cover. Condición: Fine in fine dust jacket. Counterpoint ed. Sewn binding. Cloth over boards. 174 p. Contains: Illustrations. Audience: General/trade. No previous owner's name. Clean, tight pages. slightly cocked No remainder mark. EB 109. Shortt, T M, and Rorer, Abigail (ilustrador).
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"Most Of The Good Stuff:" Memories Of Richard Feynman
Laurie M. Brown; John S. Rigden (Editors); John Archibald Wheeler, Hans Albrecht Bethe, Freeman J. Dyson, Laurie M. Brown, Julian Schwinger, Murray Gell-Mann, James D. Bjorken, David Pines, David L. Goodstein, Michael Cohen, Marvin L. Goldberger, W. Daniel Hillis, John S. Rigden, Valentine L. Telegdi, Joan Feynman
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- Primera edición
Librería: Arroyo Seco Books, Pasadena, Member IOBA, Pasadena, CA, Estados Unidos de AmericaArroyo Seco Books, Pasadena, Member IOBA
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Condición: Usado - Bueno
EUR 31,26
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Hardcover. Condición: Very Good. 1st Edition. 181 Pp. Hardcover. Gift Inscription. First Printing (No Later Printing Indicated, No Number Line). Color Faded On Spine But Lettering Clear. Small Fray At Lower Front Tip.
Conservation of Isotopic Spin and Isotopic Gauge Invariance (Yang, pp. 191-196) WITH Scattering of Low-Energy Photons by Particles of Spin 1/2 (Gell-Mann, pp. 1433-1438) WITH in Properties of Bethe-Salpeter Wave Functions (pp. 1124-1134) in Physical Review 96 (1), October 1, 1954 [YANG-MILLS QUANTUM MECHANICAL THEORY with GELL-MANN CROSSING SYMMETRY with WICK'S THEOREM]
Yang, C. N. and R. L. Mills; Murray Gell-Mann (with M. J. Goldberger); Gian Carlo Wick
Editorial: American Physical Society, Lancaster, 1954
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Librería: Atticus Rare Books, West Branch, IA, Estados Unidos de AmericaAtticus Rare Books
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EUR 200,93
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Añadir al carrito1st Edition. RARE FIRST EDITION, FIRST ISSUE of the INTRODUCTION OF THE YANG-MILLS QUANTUM MECHANICAL THEORY. Also included in this volume is the paper in which Gell-Mann and Goldberger introduce crossing symmetry. "It is shown that an exact calculation in quantum field theory gives results identical with those obtained by class…ical methods or else by use of the Dirac equation with an anomalous Pauli moment" (Abstract). Also included is an important paper by Gian Carlo Wick introducing Wick's Theorem, a method of reducing high-order derivatives to a combinatorics problem used extensively in quantum field theory. YANG-MILLS THEORY: The Yang-Mills theory is now the foundation of most of elementary particle theory; it is the mathematical foundation underlying "three of the four fundamental forces of nature that physicists succeeded in unifying in the last half of the 20th century: electromagnetism, the 'weak force' responsible for radioactive decay, and the 'strong force' responsible for holding the nuclei of atoms together" (Gale, World of Mathematics Summary). Yang and Mills proposed a tensor equation that relies on a quantum mechanical property called the 'mass gap.' "The laws of quantum physics stand to the world of elementary particles in the way that Newton's laws of classical mechanics stand to the macroscopic world. Almost half a century ago, Yang and Mills introduced a remarkable new framework to describe elementary particles using structures that also occur in geometry. The successful use of Yang-Mills theory (now widely tested and affirmed) to describe the strong interactions of elementary particles depends on a subtle quantum mechanical property called the "mass gap:" the quantum particles have positive masses, even though the classical waves travel at the speed of light. This property has been discovered by physicists from experiment and confirmed by computer simulations, but it still has not been understood from a theoretical point of view. Progress in establishing the existence of the Yang-Mills theory and a mass gap and will require the introduction of fundamental new ideas both in physics and in mathematics" (Clay Mathematics Institute). CONDITION & DETAILS: Lancaster: American Physical Society. Volume 96. 4to. This volume includes the October to December issues of 1954, six in total. The front wrap of each issue is included; each with a library stamp in the upper right corner. The wraps are otherwise pristine. A pictorial bookplate appears on the front wrap and a small stamp on the front flyleaf. There are no spine markings at all. Tightly and solidly bound in brown buckram. The journal papers are bright and very clean throughout. Very good + condition.
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Bound States in Quantum Field Theory (Gell-Mann, pp. 350-355) WITH On Nuclear Quadrupole Moments (Sternheimer, pp. 244-254) WITH On a Phenomenological Neutron-Proton Interaction (Schwinger, pp. 194-204) in Physical Review 84, Number 2, 15 October 1951
Gell-Mann, M. [Murray]; Low, Francis WITH Sternheimer, R. WITH Schwinger, Julian; Feshbach, Herman
Editorial: American Physical Society, Lancaster, 1951
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Librería: Atticus Rare Books, West Branch, IA, Estados Unidos de AmericaAtticus Rare Books
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EUR 267,91
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Añadir al carrito1st Edition. FIRST EDITION IN ORIGINAL WRAPS OF 3 SIGNIFICANT PAPERS: GELL-MANN & LOW'S THEOREM, STERNHEIMER ON SHIELDING & ANTI-SHIELDING, & SCHWINGER ON PHENOMENOLOGICAL NEUTRON-PROTON INTERACTION. GELL-MANN & LOW: Tackling formalism and the bound-state problem, Gell-Mann and Low's paper is Nobel Prize winner Gell-Mann's first… published paper. The theorem and formal derivation they achieve is a "cornerstone in quantum field theory and zero-temperature many-body theory" (Molinari, Journal of Mathematics, 48, 2007). In quantum field theory, the Gell-Mann and Low theorem "allows one to relate the ground (or vacuum) state of an interacting system to the ground state of the corresponding non-interacting theory. The theorem is useful because, among other things, by relating the ground state of the interacting theory to its non-interacting ground state, it allows one to express Green's functions (which are defined as expectation values of Heisenberg-picture fields in the interacting vacuum) as expectation values of interaction picture fields in the non-interacting vacuum. While typically applied to the ground state, the Gell-Mann and Low theorem applies to any eigenstate of the Hamiltonian. Its proof relies on the concept of starting with a non-interacting Hamiltonian and adiabatically switching on the interactions"; the proof is based on Dyson's time-ordered expansion of the propagator; a proof based on exact identities for the time propagator is here given" (Wikipedia; Molinari). STERNHEIMER: Physicists knew that electrons of any given ion interacted with the quadrupolar field of the nucleus as well as with the local electrostatic potential. With respect to NMR issues, though, an important question remained: "What part of the energy of the system ion plus nuclear quadrupole moment plus local field depends on the orientation of the nucleus?" (Solid State Physics, 5, 347). Sternheimer was the first to study questions of this nature. Sternheimer found that "a perturbing potential, whether originating within an ion or outside it, polarizes the spherically symmetric complete shells of electrons. The complete shells, having thus lost their spherical symmetry, contribute destructively (shielding) or constructively (antishielding) to the perturbing potential at any site. The reduction or enhancement of the perturbing potential, the so called Sternheimer effect, could be accounted for in terms of some parameters" (Dekeyser, Electron Emission Spectroscopy, 250). To this day, the two Sternheimer shielding factors are still taken into account when core electrons are near an electric field gradient, Sternheimer shielding and anti-shielding factors. One is "associated with charges which are on the atom (or ion) in question, and one associated with more distant charges" (Vij, Handbook, 92). SCHWINGER & FESHBACH: "This paper describes the calculations and results obtained in fitting a phenomenological interaction to the properties of the deuteron and related low energy phenomena" (Schwinger and Feshbach, Phys. Rev. 84, 194). Together, Schwinger and Feshbach "solved the problem of the deuteron ground state and numerically calculated the quadrupole moment, effective range and relative probabilities for the system remaining in a D-angular momentum state, as well as the cross sections for photoelectric disintegration of deuterons" (Mehra, Climbing the Mountain, 163). While their calculations are now mainly of "historical interest only", Schwinger and Feshbach made their calculations on Harvard's first 'computing machine' an IBM Automatic Sequence Controlled Calculator/Mark I; as well, they were among the first to use it (ibid). That machine is now on display in Harvard's Science Center. CONDITION & DETAILS: Lancaster: American Physical Society. Original wraps, complete. Two nearly invisible stamp on front wrap; professionally rebacked at the spine. 4to (10.5 x 8 inches; 263 x 200mm). Near fine condition inside and out.
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- Primera edición
Librería: Jeremy Norman's historyofscience, Novato, CA, Estados Unidos de AmericaJeremy Norman's historyofscience
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EUR 446,51
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Añadir al carritoOffprint from Annual Review of Nuclear Science 4 (1954). 219-270pp. 219 x 151 mm. Original printed wrappers. From the library of Nobel laureate Owen Chamberlain (1920-2006), with his signature on the front wrapper. Very good. First edition, offprint issue. Gell-Mann, the physicist who coined the term "quark," received the 1969 N…obel Prize in physics for his contributions and discoveries concerning the classification of elementary particles and their interactions.


