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Lecture
Nuclear Reactor Physics: Reactor Core Analysis
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Fundamentals of Nuclear Reactors
Explores the significance of delay neutrons in nuclear reactor operation and the core concepts of fission products and isotopes.
Neutron Physics: Reactor Fundamentals
Explores neutron physics in nuclear reactors, covering criticality, fuel cycles, reactor characteristics, and slowing down processes.
Reactor Kinetics: Point Kinetics Equations
Covers reactor kinetics, point kinetics equations, delayed neutrons, and decay heat in nuclear reactors.
Nuclear Reactor Accidents: TMI2 and Chernobyl
Explores the TMI2 and Chernobyl nuclear reactor accidents, safety features, and Generation IV reactors.
Reactor Technology: Reactivity Variations
Explores reactivity variations in reactor technology, covering short-term, medium-term, and long-term changes, as well as means of control and important coefficients.
Radiation Detection: Neutron Detection in Reactors
Explores neutron detection in nuclear reactors, focusing on challenges and advancements in high-resolution flux measurements.
Interaction of Neutrons with Matter: Nuclear Fission
Covers Doppler effects, anisotropic scattering corrections, and nuclear fission in reactors.
Nuclear Reactors: Concepts and Analysis
Explores nuclear reactor physics, covering basic principles, specific reactor types, accidents like Chernobyl, and advanced technologies.
Neutron Transport: Flux and Current
Explores neutron behavior in reactors, emphasizing flux, current, and reactor dynamics.
Introduction to Nuclear Engineering
Explores nuclear engineering topics such as reactor technology, safety principles, and emergency core cooling systems.