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A free and open online publication of educational material from thousands of MIT courses, covering the entire MIT curriculum, ranging from introductory to the most advanced graduate courses. On the OCW website, each course includes a syllabus, instructional material like notes and reading lists, and learning activities like assignments and solutions. Some courses also have videos, online textbooks, and faculty insights on teaching. Knowledge is your reward. There's no signup or enrollment, and no start or end dates. OCW is self-paced learning at its best. Whether you’re a student, a teacher, or simply a curious person that wants to learn, MIT OpenCourseWare (OCW) offers a wealth of insight, inspiration, videos, and a whole lot more! Get the full picture on the OCW website at https://ocw.mit.edu. Accessibility: https://accessibility.mit.edu/ User comments policy: https://ocw.mit.edu/comments/ (Channel banner photo by Nietnagel on Flickr: https://flic.kr/p/8WXxfK.)
Episodes


11. Radioactivity and Series Radioactive Decays

33. Long-Term Biological Effects of Radiation, Statistics, Radiation Risk

18. Ion-Nuclear Interactions II — Bremsstrahlung, X-Ray Spectra, Cross Sections

15. Photon Interaction with Matter II — More Details, Shielding Calculations

7. Q-Equation Continued and Examples

5. Mass Parabolas Continued, Stability, and Half Life

31. Frontiers in Nuclear Medicine, Where One Finds Ionizing Radiation (Background and Other Sources)

14. Photon Interactions with Matter I — Interaction Methods and Gamma Spectral Identification

6. The Q-Equation — The Most General Nuclear Reaction

17. Ion-Nuclear Interactions I — Scattering and Stopping Power Derivation, Ion Range

12. Numerical Examples of Activity, Half Life, and Series Decay

24. Transients, Feedback, and Time-Dependent Neutronics

10. Radioactive Decay Continued

19. Uses of Photon and Ion Nuclear Interactions — Characterization Techniques

8. Radioactive Decay — Modes, Energetics, and Trends

29. Nuclear Materials Science Continued

4. Binding Energy, the Semi-Empirical Liquid Drop Nuclear Model, and Mass Parabolas

20. How Nuclear Energy Works

23. Solving the Neutron Diffusion Equation, and Criticality Relations
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