| S# |
Lecture |
Course |
Institute |
Instructor |
Discipline |
| 5201 |
Lecture 16: Nuclear Reactor Construction and Operation (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5202 |
Lecture 35: Food Irradiation and Its Safety (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5203 |
Lecture 17: Ion-Nuclear Interactions I—Scattering and Stopping Power Derivation, Ion Range (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5204 |
1. Core – Nonconventional (Non-PWR/BWR) Reactors (M-I-T)
|
Nuclear System Design Project (M-I-T)
|
MIT
|
Prof. Michael Short
|
Applied Sciences
|
| 5205 |
Lecture 18: Ion-Nuclear Interactions II—Bremsstrahlung, X-Ray Spectra, Cross Sections (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5206 |
2. Process Heat – Major Challenges (M-I-T)
|
Nuclear System Design Project (M-I-T)
|
MIT
|
Prof. Michael Short
|
Applied Sciences
|
| 5207 |
Lecture 3: Nuclear Mass and Stability, Nuclear Reactions and Notation, Introduction to Cross Section (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5208 |
Lecture 4: Binding Energy, the Semi-Empirical Liquid Drop Nuclear Model, and Mass Parabolas (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5209 |
3. Hydrogen and Biofuel Production; Design Process (M-I-T)
|
Nuclear System Design Project (M-I-T)
|
MIT
|
Prof. Michael Short
|
Applied Sciences
|
| 5210 |
Lecture 19: Uses of Photon and Ion Nuclear Interactions—Characterization Techniques (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5211 |
Lecture 5: Mass Parabolas Continued, Stability, and Half-Life (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5212 |
Lecture 1: Introduction and Matrix Multiplication (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5213 |
Lecture 6: The Q-Equation—The Most General Nuclear Reaction (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5214 |
Lecture 20: How Nuclear Energy Works (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5215 |
4. Quality Function Deployment (QFD) and House of Quality (M-I-T)
|
Nuclear System Design Project (M-I-T)
|
MIT
|
Prof. Michael Short
|
Applied Sciences
|
| 5216 |
Lecture 21: Neutron Transport (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5217 |
7. Qualitative Optimization of CaC2/Acetylene Block Diagram (M-I-T)
|
Nuclear System Design Project (M-I-T)
|
MIT
|
Prof. Michael Short
|
Applied Sciences
|
| 5218 |
Lecture 22: Simplifying Neutron Transport to Neutron Diffusion (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5219 |
Lecture 7: Q-Equation Continued and Examples (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5220 |
Lecture 23: Solving the Neutron Diffusion Equation, and Criticality Relations (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5221 |
Lecture 8: Radioactive Decay—Modes, Energetics, and Trends (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5222 |
Lecture 24: Transients, Feedback, and Time-Dependent Neutronics (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5223 |
8. Metals and Cheeses – Uncoventional Pairings (M-I-T)
|
Nuclear System Design Project (M-I-T)
|
MIT
|
Prof. Michael Short
|
Applied Sciences
|
| 5224 |
Lecture 25: Review of All Nuclear Interactions and Problem Set 7 Help (M-I-T)
|
Introduction to Nuclear Engineering and Ionizing Radiation (Fall 2016) (M-I-T)
|
MIT
|
Prof. Dr. Michael Short
|
Applied Sciences
|
| 5225 |
Biofuels Sub-task Presentation II (M-I-T)
|
Nuclear System Design Project (M-I-T)
|
MIT
|
Prof. Michael Short
|
Applied Sciences
|