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Related lectures (22)
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Introduction to Nuclear Engineering
Covers the basics of nuclear physics, benefits of nuclear energy, reactor classification, fission reactions, and decay heat removal.
Solar Fuels: Conversion Pathways and Reactor Concepts
Explores solar energy conversion into fuels, reactor concepts, and material requirements for efficient photoelectrochemistry.
Introduction to Nuclear Engineering: Safety Basics
Introduces nuclear engineering safety basics, emphasizing safety barriers, redundancy, and defense-in-depth concepts to prevent accidents.
Fractional Factorial Designs: Generation and Resolution
Explores the methodology of fractional factorial designs in experimental setups.
Nuclear Engineering: Fukushima and Beyond
Covers various topics in nuclear engineering, including Fukushima event analysis, Chernobyl accident, and reactor safety measures.
Biomass Pyrolysis: Thermochemical Conversion
Explores biomass pyrolysis, covering process principles, reactor types, and global examples of pyrolysis processes.
Solar Fuels: Conversion Pathways and Reactor Concepts
Explores solar fuel conversion pathways, reactor designs, and challenges in sustainable solar-to-fuel technologies.
Nuclear Reactor Concepts: Safety and Sustainability
Explores new nuclear reactor concepts for enhanced safety and sustainability, covering topics from Generation-III to Generation-IV and beyond.
Molten Salt Reactor
Covers the features of pebble bed reactors, modular HTGR design, HTR-PM unit, fuel handling, safety aspects, and RBMK reactor deficiencies.
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.