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Performance Characteristics
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Safety Characteristics
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Graphite
100%
Reactor Safety
100%
Two-phase Composite
100%
Beryllium
100%
Reactor Performance
100%
Modular High Temperature Gas-cooled Reactor (MHTGR)
100%
Composite Moderator
100%
Design Basis Accident
50%
Energy Generated
50%
Unit Energy
50%
Energy Release
25%
Environmental Impact
25%
Spent nuclear Fuel
25%
Low Thermal Conductivity
25%
Thermal-hydraulic Analysis
25%
Fuel Failure
25%
Full Core
25%
Megawatt
25%
Neutron Flux Distribution
25%
Irradiation
25%
Annealing
25%
Elevated Temperature
25%
Performance Improvement
25%
High-level Waste
25%
Natural Resource Utilization
25%
Large Energy
25%
Fuel Temperature
25%
Bombardment
25%
Zirconium Hydride
25%
Host Matrix
25%
Graphite Moderated
25%
Radioactivity
25%
Hydrides
25%
Volumetric Heat Capacity
25%
Temperature Feedback
25%
Hydride Phases
25%
Graphite Moderator
25%
In-service Lifetime
25%
Discharge Burnup
25%
Beryllium Oxide
25%
High-energy Neutrons
25%
Potential Energy
25%
Cycle Performance
25%
Magnesium Oxide
25%
Forced Cooling
25%
Stable Host
25%
Fuel Cycle Cost
25%
Depressurized Loss of Forced Cooling (DLOFC)
25%
Saints
25%
Fuel Ratio
25%
Non-uniform Expansion
25%
Hydrogen Loss
25%
Nonuniform Contraction
25%
Historical Performance
25%
Ratio Design
25%
Engineering
High Temperature Gas Cooled Reactor
100%
Design Basis Accident
50%
Generated Energy
50%
Burnup
25%
Potential Energy
25%
Fuel Cycle
25%
Cycle Length
25%
Spent Nuclear Fuel
25%
Resource Utilisation
25%
Neutron Flux
25%
Elevated Temperature
25%
Reactor Safety
25%
High-Level Waste
25%
Natural Resource
25%
Energy Release
25%
Bombardment
25%
Low Thermal Conductivity
25%
Reference Case
25%
Volumetric Heat Capacity
25%
Critical Size
25%
Hydride Phase
25%
Cycle Cost
25%
Fuel Ratio
25%