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Mitsubishi Heavy Industries, ltd. | 論文
- Radiation-Hardened SRAMs Fabricated by Advanced Commercial SOI-Technology
- Large-Eddy Simulation of Non-Cavitating and Cavitating Flows in the Draft Tube of a Francis Turbine (特集 乱流シミュレーションと流れの設計(TSFD))
- ICONE11-36273 CORE AND CORE-INTERNAL DESIGN FOR INTEGRATED MODULAR WATER REACTOR (IMR)
- Improvement of Drag Prediction for Transonic Transport Aircraft Configuration Using Hybrid Unstructured Navier-Stokes Solver
- Development of Solution Behavior Observation System under Criticality Accident Conditions in TRACY
- Investigation of Neutron Reaction Behavior in Water-cooled FBR with MOX Fuel
- Experimental Study on Lightning Damage of Wind Turbine Blades
- (1-03) Study on Stratified Injection System((DE-1)Diesel Engine Combustion 1-Combustion and Emission Control)
- (1-02) Visual Study on Combustion of Low-Grade Fuel Water Emulsion((DE-1)Diesel Engine Combustion 1-Combustion and Emission Control)
- Visual Study about Combustion Characteristics of Heavy Fuel in Diesel Engines
- Improvement of Diesel Combustion Using a Fuel-Water-Fuel Injection System
- Development of Rod-embedded Fiber LDV to Measure Velocity in Fuel Rod Bundles
- Developmental Status of Aquatic Animal Experiment Facility, Aquatic Habitat (AQH), for International Space Station
- Improvement of Thermal Stability of MRAM Device with SiN Protective Film Deposited by HDP CVD
- Flow Structure of a Submerged Impinging Jet near a Free Interface
- Development of Brittle Crack Arrest Toughness K_ Test Method : Brittle Crack Arrest Design for Large Container Ships-2
- Analytical Model for Peak Temperature within a Sodium-Water Reaction Jet
- Establishment of Analytical Model for Peak Temperature Within a Sodium-Water Reaction Jet, (I) : Axial Temperature Profile Within an Inert Hot Gas Jet Injected into a Cold Liquid
- System Design of a Proton Linac for the Neutron Science Project at Japan Atomic Energy Research Institute
- Effect of Welding Cooling Rate and PWHT Conditions on the Toughness of Electron Beam Weld Metal(Materials, Metallurgy & Weldability)