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Advanced Research Laboratory, Hitachi Ltd. | 論文
- Prospects and Problems of Single Molecule Information Devices
- Characterization of a cDNA Clone Encoding 23 kDa Polypeptide of the Oxygen-Evolving Complex of Photosystem II in Rice : GENE STRUCTURE AND EXPRESSION : MEMBRANES AND BIOENERGETICS
- A Mechanism of 13% Lattice Expansion in C_ FCC(110) Thin Films Grown on the GaAs(001) As-rich Surface
- The Atomistic Origin of High Dielectric Constants of Ta_2O_5 Thin Film Deposited on Ru Electrodes
- Thermal Simulation Analysis of Scanning Near-Field Optical Microscope Point Heating Mechanisms
- Overproduction of Biologically-active Human Nerve Growth Factor in Escherichia coli
- Effects of an Epidermal Growth Factor on Growth of Zea Primary Roots and Mesocotyls : GROWTH AND DEVELOPMENT
- Promotion of Plant Cell Division by an Epidermal Growth Factor
- Theoretical Study on Total-Reflection-Angle Effect of Fluorescent X-Rays Emitted from Atoms Deposited on Surfaces
- Interface Structures Generated by Negative-Bias Temperature Instability in Si/SiO_2 and Si/SiO_xN_y Interfaces
- Nanometer-Sized Phase-Change Recording Using a Scanning Near-Field Optical Microscope with a Laser Diode
- Peroxy Linkage Defects in SiO_2 Examined through First-Principles Calculations : Defect Formation, Boron Binding, and Charged States of the B Adduct
- Dependence of Hopping-Conduction Energy of Holes on Distance between Trap Sites in SiO_2 : a Molecular Orbital Calculation
- Incorporation of N into Si/SiO_2 Interfaces : Molecular Orbital Calculations for Evaluating Interface Strain and Heat of Reaction
- Hopping-Conduction Energy of Holes in SiO_2 Determined Accurately by Molecular Orbital Calculation
- Molecular Orbital Theory Examination into the Improvement of Gate Oxide Integrity with the Incorporation of Nitrogen and Fluorine
- Effects of High and Very Low Magnetic Fields on the Growth of Hairy Roots of Daucus carota and Atropa belladonna
- Study of Initial Stage of Molecular Adsorption on Si(100) by Scanning Tunneling Microscopy
- Growth Control of Nano-Needle on Silicon Surface Using Scanning Tunneling Microscope
- Development of an In-Situ Method of Fabricating Artificial Atom Structures on the Si(100) Surface