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5 Gamma rays (4/13) -- Principles of nuclear engineering

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5 Gamma rays

5 Gamma rays Gamma rays interact with matter in very complicated ways. The three main modes of interaction are – - Photoelectric effect - Pair production - Compton scattering Compton scattering Compton scattering is elastic scattering of a photon by an electron. Momentum and energy are conserved. All angles of scattering are possible – [latex]E_2 = \frac{E_1 E_{\epsilon}}{E_1(1-cos \theta) + E_{\epsilon}}[/latex] Based on the equations for energy conservation and momentum conservation, students should be able to derive the result for [latex]E_2[/latex], as well as other important quantities, such as maximum scattered energy. Additional notes - Trinity College Dublin – PY2P20 Quantum Physics - University of Florida – PHY 4803L Advanced Physics Laboratory - Rochester Institute of Technology – PHYS314 Introduction to modern physics - MIT Open Courseware – Physical chemistry - MIT Open Courseware – Principles of chemical science - Open Yale Courses – PHYS201 Fundamentals of physics II - UIUC – NPRE402 Nuclear power engineering - MIT Open Courseware – Principles of radiation interactions - Michigan State University – CEM 485 Modern nuclear chemistry - University of Washington – Physics 575 Nuclear physics: Sources, detectors, and safety - University of Wisconsin – Physics 407 advanced laboratory
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