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New York Times Bestseller: This life story of the quirky physicist is “a thorough and masterful portrait of one of the great minds of the century” (The New York Review of Books). Raised in Depression-era Rockaway Beach, physicist Richard Feynman was irreverent, eccentric, and childishly enthusiastic—a new kind of scientist in a field that was in its infancy. His quick mastery of quantum mechanics earned him a place at Los Alamos working on the Manhattan Project under J. Robert Oppenheimer, where the giddy young man held his own among the nation’s greatest minds. There, Feynman turned theory into practice, culminating in the Trinity test, on July 16, 1945, when the Atomic Age was born. He was only twenty-seven. And he was just getting started. In this sweeping biography, James Gleick captures the forceful personality of a great man, integrating Feynman’s work and life in a way that is accessible to laymen and fascinating for the scientists who follow in his footsteps. To his colleagues, Richard Feynman was not so much a genius as he was a full-blown magician: someone who “does things that nobody else could do and that seem completely unexpected.” The path he cleared for twentieth-century physics led from the making of the atomic bomb to a Nobel Prize-winning theory of quantam electrodynamics to his devastating exposé of the Challenger space shuttle disaster. At the same time, the ebullient Feynman established a reputation as an eccentric showman, a master safe cracker and bongo player, and a wizard of seduction.
Now James Gleick, author of the bestselling Chaos, unravels teh dense skein of Feynman‘s thought as well as the paradoxes of his character in a biography—which was nominated for a National Book Award—of outstanding lucidity and compassion.

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1957 c . “The Role of Science in the World Today.”

Proceedings of the Institute of World Affairs 33:17.

Feynman; Vernon, F. L.; and Hel warth, Robert W. 1957.

“Geometric

Representation

of

the

Schrodinger

Equation for Solving Maser Problems.” Journal of Applied Physics 28:49.

Cohen, Michael, and Feynman. 1957. “Theory of Inelastic Scattering of Cold Neutrons from Liquid Helium.”

Physical Review 107:13.

1958 a . “Excitations in Liquid Helium.” Physica 24:18.

1958 b . “A Model of Strong and Weak Couplings.”

Typescript. CIT.

1958 c . “Forbidding of ? – ? Decay.” Talk at Annual International Conference on High Energy Physics at CERN, Geneva, 30 June-5 July. In Ferretti 1958.

Feynman and Gel -Mann, Murray. 1958 a . “Theory of the Fermi Interaction.” Physical Review 109:193.

Feynman and Gel -Mann, Murray, 1958 b . “Theoretical Ideas Used in Analyzing Strange Particles.” Manuscript for Geneva Conference on the Peaceful Uses of Atomic Energy. CIT.

Feynman and Gel -Mann, Murray. 1958 c . “Problems of the Strange

Particles.” Proceedings of the Second Geneva Conference on the Peaceful Uses of Atomic Energy.

1960 a . “There’s Plenty of Room at the Bottom: An Invitation to Enter a New Field of Physics.” Talk at the annual meeting of the American Physical Society, 29

December

1959.

In Engineering and Science ,

February, 22.

1960 b . “The Status of the Conserved Vector Current Hypothesis.” In Sudarshan et al. 1960, 501.

1961 a . “The Present Status of Quantum Electrodynamics.”

Talk for 1961 Solvay Conference. Typescript. CIT. In Extrait des Rapports et Discussions, Solvay . Institut International de Physique, October.

1961 b . “Theory of Gravitation.” Faraday Lecture, 13 April.

Transcript. PERS.

1961 c . Quantum Electrodynamics. New York: W. A.

Benjamin.

1961 d . Theory of Fundamental Processes. New York: W.

A. Benjamin.

Edgar, R. S.; Feynman; Klein, S.; Lielausis, I.; and Steinberg, C. M. 1961. “Mapping Experiments with r Mutants of Bacteriophage T4D.” Genetics 47:179.

Feynman; Hel warth, R. W.; Iddings, C. K.; and Platzman, P.

M. 1962. “Mobility of Slow Electrons in a Polar Crystal.”

Physical Review 127:1004.

1963 a . “The Problem of Teaching Physics in Latin America.” Transcript of keynote speech given at the First Inter-American Conference on Physics Education in Rio de Janeiro. In Engineering and Science , November, 21.

1963 b . “The Quantum Theory of Gravitation.” Acta Physica Polonica 24:697.

1963 c . “This Unscientific Age.” John Danz Lectures.

Transcript. CIT.

Feynman; Leighton, Robert B.; and Sands, Matthew. 1963.

The Feynman Lectures on Physics . Reading, Mass.: Addison-Wesley.

Feynman and Vernon, F. L. 1963. “The Theory of a General Quantum System Interacting with a Linear Dissipative System.” Annals of Physics 24:118.

1964 a . “Comments on the New Arithmetic Textbooks.”

Typescript. PERS.

1964 b .

“Theory

and

Applications

of

Mercerau’s

Superconducting Circuits.” Draft typescript. CIT.

Feynman; Gel -Mann, Murray; and Zweig, George. 1964.

“ G r o u p U (6)

× U (6)

Generated

by

Current

Components.” Physical Review Letters 13:678.

1965 a . “The Development of the Space-Time View of Quantum Electrodynamics.” Nobel Prize in Physics Award Address, Stockholm, 11 December. In Les Prix Nobel en 1965 (Stockholm: Nobel Foundation, 1966); in Physics Today , August 1966, 31; in Science (1966) 153:699; and in Weaver 1987, 2:433.

1965 b . “The Development of the Space-Time View of Quantum

Electrodynamics.”

Transcript,

physics

col oquium at California Institute of Technology, 2

December. CIT.

1965 c . “The Development of the Space-Time View of Quantum Electrodynamics.” Talk at CERN, Geneva, 17

December. Tape courtesy of Helen Tuck.

1965 d . Address to Far Rockaway High School. Transcript.

CIT.

1965 e . The Character of Physical Law . Cambridge, Mass.: MIT Press.

1965 f . “New Textbooks for the ‘New’ Mathematics.”

Engineering and Science , March, 9.

1965 g . “Consequences of SU (3) Symmetry in Weak Interactions.” In Symmetries in Elementary Particle Physics , II. New York: Ettore Majorana Academic Press.

Feynman and Hibbs, Albert R. 1965. Quantum Mechanics and Path Integrals . New York: McGraw-Hil .

1966 a . “What Is Science?” Address to National Science Teachers Association, 1–5 April. Corrected transcript.

PERS.

1966 b . “What Is and What Should Be the Role of Scientific Culture in Modern Society?” Supplemento al Nuovo Cimento 4:292.

1969 a . “What Is Science?” The Physics Teacher , September, 313.

1969 b . “The Behavior of Hadron Col isions at Extreme Energies.” Talk at Third International Conference on High Energy Col isions, State University of New York, 5–6 September. In Yang et al. 1969, 237.

1969 c . “Very High-Energy Col isions of Hadrons.” Physical Review Letters 23:1415.

1970. “Partons.” Talk at Symposium on the Past Decade in Particle Theory, University of Texas at Austin, 14–17

April. In Sudarshan and Ne’eman 1973, 773.

Thornber, K. K., and Feynman. 1970. “Velocity Acquired by an Electron in a Finite Electric Field in a Polar Crystal.”

Physical Review B10:4099.

Feynman; Kislinger, M.; and Ravndal, F. 1971. “Current

Matrix Elements from a Relativistic Quark Model.”

Physical Review D3:2706.

1972 a . “Closed Loops and Tree Diagrams.” In Klauder 1972, 355.

1972 b . “Problems in Quantizing the Gravitational Field, and the Massless Yang-Mil s Field.” In Klauder 1972, 377.

1972 c . Photon-Hadron Interactions . New York: W. A.

Benjamin.

1972 d . Statistical Mechanics: A Set of Lectures . New York: W. A. Benjamin.

1972 e . “The Proton Under the Electron Microscope.”

Oersted Medal Lecture. Manuscript. PERS.

1972 f . “What Neutrinos Can Tel Us About Particles.” In Proceedings of Neutrino ’72 Europhysics Conference .

Budapest: OMKD Technoinform.

1974. “Structure of the Proton.” Talk at Dansk Ingeniorforening, Copenhagen. Science 183:601.

1974 b . “Conference Summary.” Talk at International Conference on Neutrino Physics and Astrophysics, Philadelphia, 28 April. Typescript. CIT.

1975. “Reminiscences of Wartime Los Alamos.” Talk at University of California at Santa Barbara. Audio tapes.

AIP. Edited version in Engineering and Science , January, 11. Also in Badash et al. 1980, 105.

Excerpted in SYJ , 90. [Page references to Badash et al.]

1976. “Gauge Theories.” Lecture at Les Houches, Session 29.

1977. “Correlations in Hadron Col isions at High Transverse Momentum.” Talk at Orbis Scientiae 1977, University of Miami, Coral Gables, Florida.

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