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Lecture
Reactor Technology: Reactivity Variations and Control
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Related lectures (42)
Reactor Technology: Reactivity Variations and Control
Explores reactivity variations, control mechanisms, and the impact of the Doppler effect on reactor temperature.
Physics of Nuclear Reactors: Fundamentals and Advanced Concepts
Explores the fundamentals and challenges of nuclear reactors, covering neutron diffusion, fission, breeding, transmutation, and advanced technologies.
Neutronics Effects of Burnup
Explores the impact of burnup on neutronics in nuclear reactors, focusing on fissioning isotopes and fission product poisons.
Neutron Physics: Reactor Overview
Covers neutron interactions, fission products, energy release, and reactor design considerations.
Nuclear Reactors: Concepts and Analysis
Explores nuclear reactor physics, covering basic principles, specific reactor types, accidents like Chernobyl, and advanced technologies.
Interaction of Neutrons with Matter: Nuclear Fission
Covers Doppler effects, anisotropic scattering corrections, and nuclear fission in reactors.
Nuclear fission: Energy Release and Fission Fragments
Explores energy release from fission, fuel burnup, and fission fragments yields and decay in a nuclear reactor.
The Diffusion of Neutrons
Covers the transport of neutrons, scalar neutron flux, neutron currents, and more, along with fuel cycles and types of nuclear reactors.
Neutron chain-reacting systems
Explores practical fission fuels, chain reactions, and multiplication factors in nuclear reactors.
Nuclear Reactor Concepts: Safety and Sustainability
Explores new nuclear reactor concepts for enhanced safety and sustainability, covering topics from Generation-III to Generation-IV and beyond.
Introduction and Review of Nuclear Physics
Covers the basics of nuclear physics, including reactor physics, neutron interactions, fission, fusion, and radioactivity.
Nuclear Reactor Criticality Analysis
Covers the formalism and criticality analysis of nuclear reactors, focusing on mathematical equations and reactor stability.
Nuclear Fission: Total Cross Section Analysis
Analyzes the total cross section data for nuclear fission, covering energy dependence, transport, reactions, uncertainties, fission fragments, and radiological hazards.
Physics of Nuclear Reactors: Gas-Cooled Reactors
Explores gas-cooled nuclear reactors, covering basic principles, reactor concepts, fuel types, and advanced technologies.
Introduction to Nuclear Engineering: Chain Reactions and Fuel Cycles
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Explores chain reactions, criticality, reactor types, and fuel cycles in nuclear engineering.
Introduction to Nuclear Engineering
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Introduces nuclear engineering concepts, covering reactor technology, physics, safety measures, fission reactions, and reactor safety.
Introduction to Nuclear Engineering
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Introduces nuclear engineering, covering reactions, chain reactions, fuel cycle, criticality, and multiplication factors.
Nuclear Reactions: Basics and Applications
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Explores nuclear reactions, radioactivity, energy release, and decay heat removal in reactors.
Introduction to Nuclear Engineering: Reactor Kinetics
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Introduces reactor kinetics in nuclear engineering, covering reactivity control, critical conditions, moderator materials, and chain reaction control.
Introduction to Nuclear Engineering
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Covers the basics of nuclear engineering, reactor technology, safety barriers, reactor types, and thermodynamics of pressurized water reactors.
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