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Department Of Materials Science And Engineering Waseda University | 論文
- Susceptibility to Hydrogen Absorption and Hydrogen Thermal Desorption of Titanium Alloys Immersed in Neutral Fluoride Solution under Applied Potential
- Expransion of Injected Gas Bubble and Its Effects on Bath Mixing under Reduced Pressure
- Cold Model Experiments on the Application of Gas Lift Pump to the Transportation of Molten Metal
- Effect of Graphite Morphology on Tensile Properties of Flake Graphite Cast Iron
- Bubble-Growth for a Wetting System in the Maximum Bubble Pressure Method
- Bubble-Growth for Wetting and Nonwetting System in the Maximum Bubble Pressure Method
- FEM Analysis of Ductile Crack Growth in Fracture Transition Region for Steels with Different Void Nucleation Frequency
- Simulation of Hydrogen Thermal Desorption under Reversible Trapping by Lattice Defects
- Numerical Simulation of Phase Separation in Fe-Cr Binary and Fe-Cr-Mo Ternary Alloys with Use of the Cahn-Hilliard Equation
- Measurement of the volumetric mass-transfer coefficient for gas-liquid reaction in a mechanically stirred vessel
- Canonical Quantization for a Relativistic Neutral Scalar Field in Non-Equilibrium Thermo Field Dynamics(Particles and Physics)
- Strain Rate Dependence of Tensile Behavior and Environmental Effect in Zirconia Ceramics
- Phase Field Simulation of the Effect of Anisotropy in Grain Boundary Energy on Growth kinetics and Morphology of Grain Structure
- 半溶融および半凝固状態のAl-Mg系合金の力学特性の比較
- Computer Simulation of Grain Growth in Three Dimensions by the Phase Field Model and the Monte Carlo Method
- Effects of the Hydrogen Absorption Conditions on the Hydrogen Embrittlement Behavior of Ni-Ti Superelastic Alloy
- Growth of Cu2ZnSnS4 Single Crystal by Traveling Heater Method
- Difference in Self-Assembling Morphology of Peptide Nanorings
- IR Study on Stacking Manner of Peptide Nanorings in Peptide Nanotubes
- Theoretical Prediction and Atomic Force Microscope Observations of the Protein Nanotube Consisting of Homo-l-Amino Acid Penta-Peptide Nanorings