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Graduate School of Engineering Hokkaido University | 論文
- Intensive Improvement of Reduction Rate of Hematite-Graphite Mixture by Mechanical Milling
- Reaction Behavior of Facing Pair Between Hematite and Graphite: A Coupling Phenomenon of Reduction and Gasification
- An Analysis of Periodic Leaky Surface Acoustic Waveguides Using the Hybrid Finite Element Method
- Effect of Swirl Motion on Mixing Time in Water Bath Agitated by Upward Gas Injection
- Wettability Effect on a Single Bubble Passing through a Plate Orifice Placed in a Vertical Pipe
- Effects of Microstructural Evolution on Charpy Impact Properties of Modified Ferritic/Martensitic Steel after Neutron Irradiation
- Efficient Hybrid DFE Algorithms in Spatial Multiplexing Systems
- Clarification of regional and local in situ stresses using the compact conical-ended borehole overcoring technique and numerical analysis
- Coupled-Mode Equations for Interdigital Transducers for Leaky Surface Acoustic Waves
- Selective Solubilization of Microsomal Electron-Transfer Proteins with Alkylglucoside
- Horse riding robot for health promotion and its control
- A study on multi-path streaming media based on P2P overlay networks (ネットワークシステム)
- Flow Patterns of Gas-Liquid Two-phase Flow through an Abrupt Expansion in Millimeter-Scale Rectangular Channel
- H202 INTERACTION BETWEEN TWO BUBBLING JETS DUE TO COANDA EFFECT(Bubble behavior)
- Equilibrium Study on Interactions between Proteins and Bile-Salt Micelles by Micellar Electrokinetic Chromatography
- Photophysical Investigation of Energy Transfer Luminescence of Lanthanide Chelates with Aromatic Polyaminocarboxylate Ligands in Aqueous Solutions
- Damage to building structures caused by the 1999 Quindio earthquake in Colombia
- Fine Tuning of Pd^0 Nanoparticle Formation on Hydroxyapatite and Its Application for Regioselective Quinoline Hydrogenation
- Complete Hydrodechlorination of DDT and Its Derivatives Using a Hydroxyapatite-supported Pd Nanoparticle Catalyst
- The Preferable Growth Direction of Iron Nuclei on Wustite Surface during Reduction