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School of Engineering, Okayama University | 論文
- Far-Infrared Optical Properties of Quenched Germanium; V. Uniaxial Stress Effects on the SA_1 Acceptors : Semiconductors and Semiconductor Devices
- Far-Infrared Optical Properties of Quenched Germanium : IV. Uniaxial Stress Effects on the SA_2 Acceptor
- Far-Infrared Optical Properties of Quenched Germanium III. : Effects of Additional Impurities
- The Evaluaton Method of Workload by the Multi-Point Critical Flicker Fusion Frequency : MCFF : Vibration, Control Engineering, and Engineering for Industry, New materials, new energy, biotechnology, electronics, etc.
- An Analysis of Transient Combustion States of Diffusion Flame
- Flow Characteristics of Condensate on a Vertical Column of Horizontal Low Finned Tubes
- Phase Transformation of α" Martensite Structure by Aging in Ti-8mass%Mo Alloy
- Tensile Behavior and Cold Workability of Ti-Mo Alloys
- Wide Range Observation on Crystal Zone of Single Variant of R-phase and Martensite in Ti-50.4 at%Ni Alloy
- Evaluation of Bonding State of BCC(Fe) Edge Dislocation Core by DV-Xα Cluster Method
- TEM observation of the α"→β inverse transformation in Ti-40mass%Nb alloy (日本電子顕微鏡学会第46回シンポジウム 材料のナノ・生物のナノ) -- (ポスターセッション "7th International Symposium on Advanced physical Fields(APF-7)"との合同セッション)
- Solid Solubility and Transformation in Mechanically Alloyed Ti-Mg Powders
- Experimental Measurements of convective Heat Flux Distribution Over the Entire Skin surface of a Male Subject and Its Model
- Study on Surface Durability of Laser-hardened Steel Roller
- Study of the ω-Phase in Ti-Mo Alloys by Diffuse X-Ray Scattering
- Analysis of Laminar Flame Development in a Spherical Vessel
- Computer-aided design of discharge lamp operating circuits by the use of a criterion function
- A Study on Non-Steady Combustion : 3rd Report, On Dynamic Responses of Pipe Systems Accompanied with Combustion
- Discussion on Possibility of Acoustic Amplification and Electromagnetic Radiation in InSb Plasma
- Experimental Studies on Pressure Distribution in Orifice Jet Flows of Low Reynolds Numbers