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About the author
Preface
1. Atomic structure
2. Energy and matter
3. Nuclear physics
4. Radioactive decay
5. Gamma rays
6. Cross sections
7. Fission
8. Neutron interactions
9. Neutron attenuation
10. Bremsstrahlung radiation
11. Nuclear fuel cycle overview
12. Nuclear reactors
13. Back end management
14. Commercial nuclear power
15. Neutron multiplication factor
16. Burnup
17. Neutron diffusion
18. Equation of continuity
19. Nuclear reactor kinetics
20. Heat transfer
21. Criticality safety
22. Monte Carlo methods
23. Analytical solution to the general radionuclide transport equation
24. Analytical solution to the diffusion reaction equation
25. Waste classifications
26. Disposal concepts
27. General
28. Nuclear physics
29. Neutronics
30. Nuclear fuels
31. Advanced nuclear reactor companies
32. Nuclear fuel resources and performance
33. Nuclear fuel fabrication
34. Front-end of the fuel cycle
35. Countercurrent solvent extraction
36. Generation IV systems
37. SWU
38. Back-end of the fuel cycle
39. MCNP
40. Fuel cycle analysis
41. Fuel mangement
42. Burnup
43. Criticality safety
44. Pyroprocessing
45. Safeguards
46. Neutron transport
47. LLW management
48. DOE waste disposal facilities
49. Waste classification
50. Nuclear reactor kinetics
51. Radioactive decay
52. Interactions of radiation with matter
53. Cross sections
54. Nuclear fuel cycle overview
55. General
56. Nuclear engineering basics
57. Interaction of radiation with matter
58. Neutron interactions
59. Neutron attentuation
60. Nuclear reactor kinetics
61. Bremsstrahlung radiation
62. Cross sections
63. Fission
64. Nuclear fuel cycle overview
65. Neutronics
66. Used fuel storage
67. Front-end of the fuel cycle
68. Back-end of the fuel cycle
69. Criticality safety
70. MCNP
71. Safeguards
72. Math skills
73. Python
74. Related material
75. Apps and utilities
76. Other Lumen OERs
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Principles of nuclear engineering Copyright © 2015 by R.A. Borrelli is licensed under a Creative Commons Attribution 4.0 International License, except where otherwise noted.