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Related lectures (32)
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Introduction to Nuclear Engineering
Introduces nuclear engineering, covering reactions, chain reactions, fuel cycle, criticality, and multiplication factors.
Modified One Group Theory: Media Containing Fuel
Explores the modified one group theory for thermal reactors, focusing on media containing fuel and resonance treatment.
Chemical Reaction Engineering: Conversion and Reactor Sizing
Explores the algorithm for solving chemical reaction engineering problems, focusing on conversion and reactor sizing.
Gas Reactor: Transmutation with Fast Neutrons and High-Temperature Concepts
Explores transmutation in fast reactors, subcritical reactors, and high-temperature gas-cooled concepts.
Nuclear Reactions: Basics and Applications
Explores nuclear reactions, radioactivity, energy release, and decay heat removal in reactors.
Nuclear Engineering: Fukushima and Beyond
Covers various topics in nuclear engineering, including Fukushima event analysis, Chernobyl accident, and reactor safety measures.
Neutron Physics: Reactor Fundamentals
Explores neutron physics in nuclear reactors, covering criticality, fuel cycles, reactor characteristics, and slowing down processes.
Physics of Nuclear Reactors: Gas-Cooled Reactors
Explores gas-cooled nuclear reactors, covering basic principles, reactor concepts, fuel types, and advanced technologies.
Nuclear Reactor Safety and Sustainability
Explores new nuclear reactor concepts, safety goals, and challenges for future nuclear systems.
Introduction to Nuclear Engineering
Covers reactor technology, safety functions, accident scenarios, and emergency systems in nuclear engineering.