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Lecture
Introduction to Nuclear Engineering
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Related lectures (32)
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: Safety Basics
Introduces nuclear engineering safety basics, emphasizing safety barriers, redundancy, and defense-in-depth concepts to prevent accidents.
Introduction to Nuclear Engineering: Thermalhydraulics
Covers reactivity, stability, heat transfer, and boiling crisis in nuclear engineering thermalhydraulics.
Introduction to Nuclear Engineering: Fukushima and TMI Accidents
Discusses the Fukushima and TMI nuclear accidents, reactor designs, safety features, and consequences.
Reactor Technology: Reactivity Variations
Explores reactivity variations in reactor technology, covering short-term, medium-term, and long-term changes, as well as means of control and important coefficients.
Introduction to Nuclear Engineering
Introduces nuclear engineering, covering reactions, chain reactions, fuel cycle, criticality, and multiplication factors.
Introduction to Nuclear Engineering: Wrap-up
Covers a wide range of topics in nuclear engineering, including reactor technology, safety challenges, and Generation IV concepts.
Nuclear Reactor Physics
Covers exercises on nuclear reactor physics, including mass calculations, heat evacuation, radioactive equilibrium, and critical parameters.
Advanced LWR Technology
Explores burnup algorithms, time-step discretization, LWR fuel evolution, spent fuel composition, refueling techniques, and boric acid control in PWRs.
Multiplying media: Analytical Solutions and Non-leakage Probability
Covers media containing fuel, analytical solutions, and non-leakage probability for thermal and fast neutrons.
Introduction to Nuclear Engineering
Covers the importance of delayed neutrons in reactor response and the thermalhydraulics of reactor cores.
Neutron Kinetics: Reactivity and Reactor Dynamics
Explores reactivity equations, stable reactor periods, and the impact of reactivity variations on reactor safety.
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