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THE WIDTHS OF NUCLEAR ENERGY LEVELS. by Julian, J. H. Manley and H. H. Goldsmith. SCHWINGER,  1939
Differential equations of quantum field theory: A set of lectures given at Stanford University during the summer of 1956 by Julian Seymour Schwinger,  1956
Sin-Itiro Tomonaga: Quantum Electrodynamics, Nobel Prize in Physics, Richard Feynman, Julian Schwinger, Kyoto University, Hideki Yukawa, World War II, Nuclear Physics, Cavity Magnetron 
Schwinger?Dyson Equation: Julian Schwinger, Freeman Dyson, Quantum Field Theory, State Vector, Path-Ordering, Density Matrix, Correlation Function, Perturbation ... Theory, Feynman Diagram, DeWitt Notation 
Schwinger model: Julian Schwinger, Euclidean, Quantum Electrodynamics, Dirac Spinor, Spontaneous Symmetry Breaking, Fermionic Condensate, Instanton, Photon, Toy Model, Color Confinement 
Introduction and selected topics in source theory by Julian Seymour Schwinger,  1979
Quantum dynamics by Julian Seymour Schwinger,  1955
Electromagnetic Radiation. by Kimball A./ Schwinger, Julian. Milton,  1980
Quantum Kinematics and Dynamics by Julian Schwinger,  1991
Nuclear physics: Lectures by Julian Seymour Schwinger,  1952
The theory of the fundamental interactions by Julian Seymour Schwinger,  1957
Discontinuities in waveguides: Notes on lectures by Julian Seymour Schwinger,  1945
Particles, Sources, and Fields. Vol. 3 by Julian Schwinger,  1998
Particles and Sources Documents on Modern Physics by Julian Schwinger,  1969 |