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Department of Electrical Engineering, Faculty of Engineering, Fukuoka University | 論文
- Planar Contactless Charging System Applying Three-Phase Power Transformer
- Transformation of Egg-White Glass into Partially Crystallized Glass Induced by Heat Treatment and Gamma-Ray Irradiation
- Magnetic Properties of Granular Superconductors Rb_3C_
- Giant Quantum Attenuation of Sound Waves in Bismuth. : II. Line Shape of the Attenuation Coefficient
- Giant Quantum Attenuation of Sound Waves in Bismuth. : I. Spin Splitting Factors of Electrons and Holes
- Large Dip and Hump Type Quantum Oscillations in Magnetoacoustic Attenuation in Dilute Bi_1-xSb_x Alloys for q∧H〜90°. II. Theory
- Large Dip and Hump Type Quantum Oscillations in Magnetoacoustic Attenuation in Dilute Bi_1-xSb_x Alloys for q∧H〜90°. I. Experiment
- Magnetoacoustic Attenuation in Semimetals. IV. Line Shape Analysis of Giant Quantum Attenuation in Bismuth and Bismuth-Antimony Alloys
- Magnetoacoustic Attenuation in Semimetals. III. Enhancement of Quantum Oscillations in Bismuth-Antimony Alloys for q^(81C8)H〜90゜
- Landau Level Broadening of the Electrons in Antimony
- Quantum Oscillations of the Velocity of Sound in Antimony
- Superconducting Character of Nb_3Ge Single Crystals : Electrical Properties of Condensed Matter
- Fluctuation of the Electrical Conductivity Associated with the Glass Transition of xKNO_3・(100-x)Sr(NO_3)_2 Glasses
- Superconductivity and Crystal Structure of the Y_1Ba_2Cu_3O_-WO_3 System
- Low-Temperature ^Sn-Mossbauer Study of Superconducting Bi_4Sr_Ca_Cu_4Sn_O_ Ceramic (2212 Phase)
- ^Sn-Mossbauer Study on the Normal Lattice Vibration of Superconducting Bi(Pb)_2Sr_2Ca_2Cu_3Sn_O_
- Precipitation of Mayenite in 60CaO・35Al_2O_3・5Fe_2O_3 Glass Annealed at Several Temperatures Below and Above the Glass Transition Temperature
- Softening of Cu(1)-Site Vibration Matched with the Onset Temperature of Superconducting YBa_2(Cu_Sn_)_3O_
- ^Sn-Mossbauer Spectroscopic Study of High-T_c Superconducting YBa_2(Cu_Sn_)_3O_ and the Gamma-Ray Irradiation Effect