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Introduction to Nuclear Engineering
Covers various topics in nuclear engineering, including reactor technology, nuclear physics, and safety analysis assumptions.
Nuclear Reactors: Concepts and Analysis
Explores nuclear reactor physics, covering basic principles, specific reactor types, accidents like Chernobyl, and advanced technologies.
Neutron chain-reacting systems
Explores chain reactions, multiplication factor, fuel cycles, reactor design, and types of nuclear reactors, ending with a summary of key concepts.
Chemical Reaction Engineering: Isothermal Reactor Design
Covers the design of isothermal reactors for chemical reactions, focusing on stoichiometry, rate laws, and concentration as a function of conversion.
Solar Fuels: Conversion Pathways and Reactor Concepts
Explores solar energy conversion into fuels, reactor concepts, stringent material requirements, proposed devices, efficiency considerations, and net value per energy.
Solar Fuels: Reactor Concepts and Conversion Pathways
Explores reactor designs, conversion pathways, and materials for solar fuel production, emphasizing solar thermolysis and thermochemical cycles.
Introduction to Nuclear Engineering: Reactor Kinetics
Introduces reactor kinetics in nuclear engineering, covering reactivity control, critical conditions, moderator materials, and chain reaction control.
Chemical Reactions Engineering
Covers the engineering of chemical reactions, types of reactions, selectivity, and yield calculations.
Chemical Engineering of Heterogeneous Reactions
Covers the basics of chemical engineering of heterogeneous reactions and introduces Laplace transforms to simplify complex problems.
Neutron Diffusion Equation: Numerical Methods
Covers numerical methods for solving the neutron diffusion equation and addressing heterogeneous effects in thermal reactors.