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Related lectures (32)
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Neutron Physics: Reactor Fundamentals
Explores neutron physics in nuclear reactors, covering criticality, fuel cycles, reactor characteristics, and slowing down processes.
Introduction to Nuclear Engineering: Thermalhydraulics
Covers reactivity, stability, heat transfer, and boiling crisis in nuclear engineering thermalhydraulics.
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.
Nuclear Waste: Radioactive Elements and Waste Management
Covers incident neutron, fissionable nucleus, energy release, and radioactive waste management.
Nuclear Reactivity: Moderation, Enrichment, Absorption
Covers moderation, enrichment, and absorption in nuclear reactivity.
Neutron Physics: Reactor Overview
Covers neutron interactions, fission products, energy release, and reactor design considerations.
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.
Introduction to Nuclear Engineering
Introduces nuclear engineering principles, safety systems, reactor design, and accident management procedures.
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.
Introduction to Nuclear Engineering
Covers various topics in nuclear engineering, including reactor technology, nuclear physics, and safety analysis assumptions.