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Lecture
Nuclear Reactions: Basics and Applications
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Neutron Physics: Reactor Behavior
Covers neutron physics in nuclear reactors, including criticality, fission, and neutron distribution.
Neutron Physics: Reactor Overview
Covers neutron interactions, fission products, energy release, and reactor design considerations.
Neutron chain-reacting systems
Explores chain reactions, multiplication factor, fuel cycles, reactor design, and types of nuclear reactors, ending with a summary of key concepts.
Nuclear Fission: Energy Release and Neutron Interactions
Explores nuclear fission, energy release, fission neutrons, and practical fuels in a nuclear reactor.
Introduction to Nuclear Engineering: Reactor Kinetics
Introduces reactor kinetics in nuclear engineering, covering reactivity control, critical conditions, moderator materials, and chain reaction control.
Neutron Transport Theory: Fundamentals and Applications
Explores neutron transport theory, scalar neutron flux, and Fick's law in reactor physics.
Neutronics Effects of Burnup
Explores the impact of burnup on neutronics in nuclear reactors, focusing on fissioning isotopes and fission product poisons.
Reactor Technology: Reactivity Variations and Control
Explores reactivity variations, control mechanisms, and the impact of the Doppler effect on reactor temperature.
Introduction to Nuclear Engineering
Introduces nuclear engineering, covering reactor types, components, and thermodynamics, including pressurized water reactors and boiling water reactors.
Interaction of Radiation with Matter
Covers the interaction of radiation with matter, including direct and indirectly ionizing radiation and nuclear reactions.