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Lecture
Nuclear Conversion: Basics and Reactors
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Introduction and Review of Nuclear Physics
Covers the basics of nuclear physics, including reactor physics, neutron interactions, fission, fusion, and radioactivity.
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Nuclear Demands: Uranium Reserves, Consumption, and Power Plants
Explores uranium demands, global energy systems, nuclear power plant distribution, and electricity costs.
Nuclear Reactions: Basics and Applications
Explores nuclear reactions, radioactivity, energy release, and decay heat removal in reactors.
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Explores chain reactions, criticality, reactor types, and fuel cycles in nuclear engineering.
Introduction to Nuclear Engineering
Introduces nuclear engineering concepts, covering reactor technology, physics, safety measures, fission reactions, and reactor safety.
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.
Reactor Technology: Reactivity Variations and Control
Explores reactivity variations in reactor technology, covering short-term, medium-term, and long-term effects, means of control, and consequences.
Introduction to Nuclear Engineering
Introduces nuclear engineering, covering reactor types, components, and thermodynamics, including pressurized water reactors and boiling water reactors.
Interactions of Neutrons with Matter
Explores the interaction of neutrons with matter through cross sections, scattering, absorption, and energy dependencies.