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Department Of Quantum Engineering And System Science Graduate School Of Engineering The University O | 論文
- The SPV NO_2 Gas Sensor Fabricated by Mesoporous Tin Oxide Film
- An Application Possibility of Self-Ordered Mesoporous Silicate for Surface Photo Voltage (SPV) Type NO Gas Sensor (II) : Self-Ordered Mesoporous Silicate Incorporated SPV Device and Its Sensing Property Dependence on Mesostructure(Special Issue on Recent
- An Application Possibility of Self-Ordered Mesoporous Silicate for Surface Photo Voltage Type NO Gas Sensor (I) : The Characterization of Nonionic Triblock Copolymer Templated Self-Ordered Mesoporous Silicates and Preparation Their Film for Device Applica
- NO Gas Sensor Based on Surface Photovoltage System Fabricated by Self-Ordered Hexagonal Mesoporous Silicate Film : Atoms, Molecules, and Chemical Physics
- Determination of Third-Order Optical Nonlinearity Dispersion of 1-Methyl-1'-Octadecyl-2, 2'-Cyanine Perchlorate Langmuir-Blodgett Films Using Electroabsorption Spectroscopy
- Transition of Edge Particle Transport in CHS
- ATWS Characteristics of Super LWR with/without Alternative Action
- LOCA Analysis of Super LWR
- Safety of Super LWR, (II) : Safety Analysis at Supercritical Pressure
- Safety of Super LWR, (I) : Safety System Design
- Simulation of Droplet Generation in Micro Flow Using MPS Method
- Three-dimensional numerical analysis of shipping water onto a moving ship using a particle method
- Influence of Underlayer Materials on Preferred Orientations of Sputter-Deposited AlN/Mo Bilayers for Film Bulk Acoustic Wave Resonators
- 1.5-GHz SAW Miniature Antenna Duplexer Used in Personal Digital Cellular (Special Issue on Microwave Devices for Mobile Communications)
- Numerical Analysis of Jet Breakup Behavior Using Particle Method
- REDUCTION OF COMMUNICATION IN PARALLEL COMPUTING OF PARTICLE METHOD FOR FLOW SIMULATION OF SEASIDE AREAS
- Effect of Nuclear Fuel Particle Movement on Nuclear Criticality in a Rotating Cylindrical Vessel
- Assessment of Spherical Tokamak Reactors Comparing with Other Fusion Power Plants
- Numerical Analysis of Droplet Impingement on Pipe Inner Surface Using a Particle Method