جزییات کتاب
A practical guide to the basic physics that radiation protection professionals needA much-needed working resource for health physicists and other radiation protection professionals, this volume presents clear, thorough, up-to-date explanations of the basic physics necessary to address real-world problems in radiation protection. Designed for readers with limited as well as basic science backgrounds, Physics for Radiation Protection emphasizes applied concepts and carefully illustrates all topics through examples as well as practice problems.Physics for Radiation Protection draws substantially on current resource data available for health physics use, providing decay schemes and emission energies for approximately 100 of the most common radionuclides encountered by practitioners. Excerpts of the Chart of the Nuclides, activation cross sections, fission yields, fission-product chains, photon attenuation coefficients, and nuclear masses are also provided. Coverage includes:The atom as an energy systemAn overview of the major discoveries in radiation physicsExtensive discussion of radioactivity, including sources and materialsNuclear interactions and processes of radiation doseCalculational methods for radiation exposure, dose, and shieldingNuclear fission and production of activation and fission productsSpecialty topics ranging from nuclear criticality and applied statistics to X raysExtensive and current resource data cross-referenced to standard compendiumsExtensive appendices and more than 400 figures This complete discussion of the basic concepts allows readers to advance their professional skills.Content: Chapter 1 Structure of Atoms (pages 1–10): Chapter 2 Atoms and Energy (pages 11–19): Chapter 3 Radioactive Transformation (pages 21–89): Chapter 4 Interactions (pages 91–141): Chapter 5 Nuclear Fission and its Products (pages 143–196): Chapter 6 Naturally Occurring Radiation and Radioactivity (pages 197–243): Chapter 7 Interactions of Radiation with Matter (pages 245–305): Chapter 8 Radiation Shielding (pages 307–363): Chapter 9 Internal Radiation Dose (pages 365–413): Chapter 10 Environmental Dispersion (pages 415–454): Chapter 11 Nuclear Criticality (pages 455–487): Chapter 12 Radiation Detection and Measurement (pages 489–522): Chapter 13 Statistics in Radiation Physics (pages 523–570): Chapter 14 Neutrons (pages 571–606):