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Introduction to Nuclear Engineering: Chain Reactions and Fuel Cycles
Explores chain reactions, criticality, reactor types, and fuel cycles in nuclear engineering.
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.
Collisions and Energy Conservation in Physics
Covers the principles of collisions, focusing on energy conservation and momentum in elastic and inelastic collisions.
Nuclear Reactions: Basics and Applications
Explores nuclear reactions, radioactivity, energy release, and decay heat removal in reactors.
Nuclear Reactors: Multigroup Theory
Covers the basics of nuclear reactors, including nuclear fission, neutron diffusion, and multigroup theory.
Xenon Equilibrium Concentration in Reactors
Discusses Xenon equilibrium in reactors, fission product activity, and power limit calculation.
Neutron Physics: Reactor Overview
Covers neutron interactions, fission products, energy release, and reactor design considerations.
Fast Fission: Understanding Nuclear Reactors
Focuses on fast fission in nuclear reactors and the importance of U-238 in fuel efficiency.
Nuclear Medicine: Radioactive Tracers in Medical Imaging
Covers the use of radioactive tracers in medical imaging and the technique of dating wines using cesium-137.
Interaction of Radiation with Matter
Covers the interaction of radiation with matter, including direct and indirectly ionizing radiation and nuclear reactions.