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Nuclear Reactors: Multigroup Theory
Covers the basics of nuclear reactors, including nuclear fission, neutron diffusion, and multigroup theory.
Neutron Diffusion Modeling
Explores neutron diffusion in nuclear reactors, emphasizing key concepts for modeling neutron behavior and reactor safety.
Nuclear Reactor Physics: Losses and Fission Reaction Rates
Covers losses in nuclear reactors and their impact on fission reaction rates.
Collisions in Physics: Conservation of Momentum and Energy
Explains the principles of momentum and energy conservation in collisions, highlighting their applications in physics and real-world scenarios.
Nuclear Reactor Criticality Analysis
Covers the formalism and criticality analysis of nuclear reactors, focusing on mathematical equations and reactor stability.
Neutron Depletion
Covers neutron depletion in nuclear reactors and its mathematical models and calculations.
Nuclear Energy: Production and Risks
Explores nuclear energy production, Swiss energy transition, reactor operation, historical developments, risks, and global reactor status.
Titanium Aluminides and Zirconium
Discusses titanium aluminides, zirconium, and hafnium properties, applications, production, and separation processes.
Nuclear Demands: Uranium Reserves, Consumption, and Power Plants
Explores uranium demands, global energy systems, nuclear power plant distribution, and electricity costs.
Neutron Slowing Down in Reactors
Explores neutron slowing down in reactors, emphasizing the transition from high-energy to thermal neutrons and the role of moderators like hydrogen and graphite.