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Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Reactor Physics and Thermodynamics
( 24 Modules )

Module #1
Introduction to Reactor Physics
Overview of nuclear reactors, importance of reactor physics, and course objectives
Module #2
Nuclear Reactions and Interactions
Basics of nuclear reactions, neutron-nucleus interactions, and reaction types
Module #3
Neutron Physics
Neutron properties, neutron moderation, and neutron diffusion
Module #4
Reactor Core Design
Overview of reactor core design, fuel types, and coolant systems
Module #5
Neutron Transport Theory
Introduction to neutron transport theory, Boltzmann equation, and numerical methods
Module #6
Reactor Kinetics
Reactor kinetics, point kinetics, and space-time kinetics
Module #7
Reactor Stability
Reactor stability, feedback mechanisms, and stability analysis
Module #8
Thermodynamics of Nuclear Reactors
Introduction to thermodynamics, thermodynamic systems, and energy conversion
Module #9
Thermodynamic Properties of Materials
Thermodynamic properties of fuels, coolants, and moderators
Module #10
Heat Transfer in Reactors
Heat transfer mechanisms, heat transfer coefficients, and heat exchangers
Module #11
Fluid Flow in Reactors
Fluid flow types, fluid flow equations, and pressure drop calculations
Module #12
Reactor Safety and Accidents
Reactor safety, accident scenarios, and safety analysis
Module #13
Radiation Protection and Shielding
Radiation protection, radiation shielding, and radiation detection
Module #14
Nuclear Fuel Cycle
Nuclear fuel cycle, fuel enrichment, and fuel reprocessing
Module #15
Reactor Types and Applications
Overview of different reactor types, advantages, and applications
Module #16
Advanced Reactor Designs
Advanced reactor designs, small modular reactors, and Generation IV reactors
Module #17
Computational Tools for Reactor Physics
Overview of computational tools, Monte Carlo methods, and deterministic methods
Module #18
Reactor Physics Experiments and Simulations
Reactor physics experiments, simulation techniques, and results analysis
Module #19
Thermal-Hydraulic Analysis of Reactors
Thermal-hydraulic analysis, computational fluid dynamics, and system codes
Module #20
Reactor Operation and Control
Reactor operation, control systems, and operator training
Module #21
Reactor Licensing and Regulation
Reactor licensing, regulatory frameworks, and safety standards
Module #22
Reactor Decommissioning and Waste Management
Reactor decommissioning, waste management, and storage techniques
Module #23
Economic and Environmental Impact of Nuclear Reactors
Economic and environmental impact of nuclear reactors, cost analysis, and environmental assessment
Module #24
Course Wrap-Up & Conclusion
Planning next steps in Reactor Physics and Thermodynamics career


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