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Special Relativity and Quantum Theory

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Cover of 'Special Relativity and Quantum Theory'

Table of Contents

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    Book Overview
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    Chapter 1 Relativistic Invariance and Quantum Phenomena
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    Chapter 2 The Early Years of Relativity
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    Chapter 3 On Unitary Representations of the Inhomogeneous Lorentz Group
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    Chapter 4 Group Theoretical Discussion of Relativistic Wave Equations
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    Chapter 5 Unitary representations of the Lorentz group
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    Chapter 6 Feynman Rules for Any Spin
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    Chapter 7 Representations of the Poincaré group for relativistic extended hadrons
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    Chapter 8 A simple method for illustrating the difference between the homogeneous and inhomogeneous Lorentz groups
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    Chapter 9 The Quantum Theory of the Emission and Absorption of Radiation
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    Chapter 10 The Quantum Theory of Dispersion
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    Chapter 11 On the Time—Energy Uncertainty Relation
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    Chapter 12 Time-energy uncertainty relation and Lorentz covariance
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    Chapter 13 Forms of Relativistic Dynamics
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    Chapter 14 Quantum Theory of Non-Local Fields. Part I. Free Fields
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    Chapter 15 Quantum Theory of Non-Local Fields. Part II. Irreducible Fields and their Interaction
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    Chapter 16 Structure and Mass Spectrum of Elementary particles. I. General Considerations
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    Chapter 17 Structure and Mass Spectrum of Elementary Particles II. Oscillator Model
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    Chapter 18 Properties of Bethe-Salpeter Wave Functions
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    Chapter 19 Covariant Harmonic Oscillators and the Quark Model
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    Chapter 20 Orthogonality relation for covariant harmonic-oscillator wave functions
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    Chapter 21 Complete orthogonality relations for the covariant harmonic oscillator
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    Chapter 22 Dirac’s form of relativistic quantum mechanics
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    Chapter 23 Electron Scattering from the Proton
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    Chapter 24 Nucleon Electromagnetic Form Factors at High Momentum Transfers in an Extended Particle Model Based on the Quark Model
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    Chapter 25 The Behavior of Hadron Collisions at Extreme Energies
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    Chapter 26 Inelastic Electron-Proton and γ-Proton Scattering and the Structure of the Nucleon
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    Chapter 27 Covariant harmonic oscillators and the parton picture
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    Chapter 28 Valons and harmonic oscillators
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    Chapter 29 Feynman Rules for Any Spin. II. Massless Particles
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    Chapter 30 Photons and Gravitons in S -Matrix Theory: Derivation of Charge Conservation and Equality of Gravitational and Inertial Mass
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    Chapter 31 E(2)-like little group for massless particles and neutrino polarization as a consequence of gauge invariance
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    Chapter 32 On the Contraction of Groups and Their Representations
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    Chapter 33 Internal space-time symmetries of massive and massless particles
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    Chapter 34 Eulerian parametrization of Wigner’s little groups and gauge transformations in terms of rotations in two-component spinors
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    Chapter 35 Cylindrical group and massless particles
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    Chapter 36 Localized States for Elementary Systems
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    Chapter 37 On the Localizability of Quantum Mechanical Systems
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    Chapter 38 Uncertainty relations for light waves and the concept of photons
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    Chapter 39 Precession of the Polarization of Particles Moving in a Homogeneous Electromagnetic Field
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    Chapter 40 Is there a Link between Gauge Invariance, Relativistic Invariance and Electron Spin?
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    Chapter 41 Special Relativity and Diagonal Transformations
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    Chapter 42 A Useful Form of the Minkowski Diagram
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    Chapter 43 SU(2) and SU(1,1) interferometers
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    Chapter 44 Thomas precession, Wigner rotations and gauge transformations
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    Chapter 45 Linear canonical transformations of coherent and squeezed states in the Wigner phase space
Attention for Chapter 25: The Behavior of Hadron Collisions at Extreme Energies
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Chapter title
The Behavior of Hadron Collisions at Extreme Energies
Chapter number 25
Book title
Special Relativity and Quantum Theory
Published by
Springer, Dordrecht, January 1988
DOI 10.1007/978-94-009-3051-3_25
Book ISBNs
978-9-40-107872-6, 978-9-40-093051-3
Authors

Richard P. Feynman, Feynman, Richard P.

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Mendeley readers

The data shown below were compiled from readership statistics for 16 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
China 1 6%
Unknown 15 94%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 5 31%
Student > Master 4 25%
Researcher 3 19%
Unknown 4 25%
Readers by discipline Count As %
Physics and Astronomy 12 75%
Unknown 4 25%