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Department Of Molecular Chemistry And Engineering Tohoku University | 論文
- Investigation of Hydrogen Chemisorption on GaAs(111)A Ga Surface by In Situ Monitoring and Ab Initio Calculation
- Computational Chemistry Study of Diamond-like Carbon : Functions and Structure Control by Frictional Force
- Theoretical Study on Electronic and Electrical Properties of Nano Structural ZnO
- Theoretical study on the electrical properties of conducting carbon based materials
- Dielectric Breakdown Simulation by Molecular Dynamics and Tight-Binding Quantum Chemistry Methods
- Development of New Calculation Method for Rare Earth Element and Large Scale Electronic Structure Calculation of Blue Phosphor BaMgAl_O_:Eu^
- Quantum Chemical Molecular Dynamics Studies on the Chemical Mechanical Polishing Process of Cu Surface
- A Theoretical Study on the Realistic Low Concentration Doping in Silicon Semiconductors by Accelerated Quantum Chemical Molecular Dynamics Method
- Quantum Chemical Molecular Dynamics Simulation of the Plasma Etching Processes
- Tight-Binding Molecular Dynamics Study of Hydrogen Molecule Inside Silicon Crystal
- Tight-binding Molecular Dynamics Simulation of Desorbed SiO Molecule during the Oxidation of Si(111) Surface
- Quantum Chemical Study on the Interaction of NF3 with Si
- Tight-Binding Molecular Dynamics Simulation of Desorbed SiO Molecule during the Oxidation of Si(111) Surface
- Atomic Control of Ultrafine Gold Particles on MgO(100) as Investigated by Molecular Dynamics and Computer Graphics
- Molecular Dynamics Simulations of Metal Clusters and Metal Deposition on Metal Surfaces
- Aluminum Reflow Behavior in Via-Hole Filling Investigated by Molecular Dynamics Simulation and Computer Graphics
- THE INFLUENCE OF ^B ADDITION ON THE SWELLING SUPPRESSION BY PHOSPHORUS AND TITANIUM IN Fe-Cr-Ni
- Structural Properties of Li_xMn_2O_4 as Investigated by Molecular Dynamics and Density Functional Theory
- Periodic Boundary Quantum Chemical Study on ZnO Ultra-Violet Laser Emitting Materials
- Periodic Boundary Quantum Chemical Study on ZnO Ultra-Violet Laser Emitting Materials