Book contents
- Frontmatter
- Contents
- Preface
- Part 1 Introduction
- 1 Motivation
- 2 Pictures of the nucleus
- 3 Some optics
- 4 Why electron scattering?
- 5 Target response surfaces
- 6 Why coincidence experiments?
- 7 Units and conventions
- Part 2 General analysis
- Part 3 Quantum electrodynamics
- Part 4 Selected examples
- Part 5 Future directions
- Appendix A Long–wavelength reduction
- Appendix B Center of mass (C–M) motion
- Appendix C Weizsäcker–Williams approximation
- Appendix D Polarization and spin–1/2 fermions
- Appendix E Symmetry properties of matrix elements
- Appendix F Angular correlations
- Appendix G Relativistic quasielastic scattering
- Appendix H Pion electroproduction
- Appendix I Light–cone variables
- References
- Index
6 - Why coincidence experiments?
from Part 1 - Introduction
Published online by Cambridge University Press: 05 November 2022
- Frontmatter
- Contents
- Preface
- Part 1 Introduction
- 1 Motivation
- 2 Pictures of the nucleus
- 3 Some optics
- 4 Why electron scattering?
- 5 Target response surfaces
- 6 Why coincidence experiments?
- 7 Units and conventions
- Part 2 General analysis
- Part 3 Quantum electrodynamics
- Part 4 Selected examples
- Part 5 Future directions
- Appendix A Long–wavelength reduction
- Appendix B Center of mass (C–M) motion
- Appendix C Weizsäcker–Williams approximation
- Appendix D Polarization and spin–1/2 fermions
- Appendix E Symmetry properties of matrix elements
- Appendix F Angular correlations
- Appendix G Relativistic quasielastic scattering
- Appendix H Pion electroproduction
- Appendix I Light–cone variables
- References
- Index
Summary
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- Chapter
- Information
- Electron Scattering for Nuclear and Nucleon Structure , pp. 23 - 25Publisher: Cambridge University PressPrint publication year: 2023
- Creative Commons
- This content is Open Access and distributed under the terms of the Creative Commons Attribution licence CC-BY-NC-ND 4.0 https://creativecommons.org/cclicenses/