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Department of Materials Science, Faculty of Engineering, Ibaraki University | 論文
- An Autocatalytic Constant Sensitivity Detection System for Catalysts and Infectors
- Determination of Small Amounts of L-Ascorbic Acid Using the Chemiluminescence of an Iron-Chlorophyllin Complex
- Red Shift of the Soret Band of Anionic Water-Solubel Porphyrins Induced by Polyelectrolytes and Its Application to the Colloidal Titration and Spectrophotometric Determination of Polyelectrolytes
- Determination of ppb Levels of Tryptophan Derivatives by Capillary Electrophoresis with Homogeneous Liquid-Liquid Extraction and Sweeping Method
- Microwave Plasma Nitriding of Hollow Tube Inner Wall
- Influence of P Content in Electroless Plated Ni-P Alloy Film on Interfacial Structures and Strength between Sn-Zn Solder and Plated Au/Ni-P Alloy Film
- Influence of Phosphorus Concentration in Electroless Plated Ni-P Alloy Film on Interfacial Structures and Strength between Sn-Ag-(-Cu) Solder and Plated Ni-P Alloy Film
- Collection of Iron(III) from Homogeneous Aqueous Solutions on Membrane Filters Using Chromazurol B with Triton X-100
- Application of Thiouronium Derivatives as Anion Ionophores for Ion Selective Electrodes
- Strength Anisotropy and Residual Stress in Drawn Pearlite Steel Wire
- ペルオキシダーゼ固定化ポリイオン複合膜を用いた乳酸センサの作製
- バナジウム・モリブデン酸化物のリチウム挿入挙動
- Lengthening Kinetics of Bainitic Plates in Iron-Nickel-Carbon Alloys
- Operative Treatment of a Transverse Fracture-Dislocation at the S1-S2 Level
- In Situ Neutron Diffraction Experiment during Tensile Deformation for a TRlP Type Multi-Phase Steel
- Determination of Trace Impurities in Graphite and Silicon Carbide by Total Reflection X-ray Fluorescence Spectrometry after Homogeneous Liquid-Liquid Extraction
- TXRF Analysis of Solution Samples Using Polyester Film as a Disposable Sample-Carrier Cover
- Anisotropy in Strength of a TiAl Base Polycrystal with Unidirectionally Oriented Lamellae
- Monte Carlo Simulation of Diffusion Process on Quasi-Lattice
- Functionally Graded Coating for Steels by Reaction Diffusion Using FeAl_3 Powder