Tsuboi Takefumi | Department Of Chemistry Faculity Of Science Kyoto University
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概要
関連著者
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Tsuboi Takefumi
Department Of Chemistry Faculity Of Science Kyoto University
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SUZUKI Takao
Department of Applied Physics, Tohoku University
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Suzuki Takao
Department Of Anatomical Science Hirosaki University Graduate School Of Medicine
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SUZUKI Takao
Department of Agricultural Chemistry, Tokyo University of Agriculture
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Suzuki Takao
Department Of Applied Physics Tohoku University
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Tsuboi T
Cell-free Science And Technology Research Center Ehime University
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SEGUCHI Yasuhiro
Department of Metal Engineering, Kinki University
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Seguchi Y
Department Of Metal Engineering Kinki University
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Seguchi Yasuhiro
Department Of Applied Chemistry Faculty Of Science And Engineering Kinki University
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Takaki Hideo
Department Of Chemistry Faculity Of Science Kyoto University
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TAKAKI Hideo
Department of Chemistry, Faculty of Science
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TSUBOI Takefumi
Department of Metal-Engineering,Faculty of Science and Technology,Kinki University
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Suzuki Takao
Department Of Physics Faculty Of Science Kyoto University
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Takaki Hideo
Department Of Metal-engineering Faculty Of Science And Technology Kinki University
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Tsuboi Takefumi
Department Of Metal-engineering Faculty Of Science And Technology Kinki University
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Suzuki Takao
Department of Physics,Faculty of Science,Kyoto University
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Tsutsui Satoshi
Department Of Materials Science And Technology Iwate University
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Tsuboi T
Department Of Metal Engineering Faculty Of Science And Technology Kinki University
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Suzuki T
Issp University Of Tokyo
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TSUBOI Takafumi
Department of Molecular Parasitology, Ehime University School of Medicine
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Tatsuoka Sho
Graduate School Of Science Tokyo Metropolitan University
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Suzuki N
Riken (inst. Physical And Chemical Res.) Saitama
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Suzuki N
Osaka Univ. Osaka Jpn
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Tsuboi Takafumi
Department Of Metal Engineering Faculty Of Science And Technology Kinki University
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Kawahara Toshio
Department Of Materials Science And Engineering National Defense Academy
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Takaki Hideo
Department Of Metal Engineering Faculty Of Science And Technology Kinki University
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Nakajima Tetsuo
Department Of Chemistry Faculity Of Science Kyoto University
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MIZUSAKI Tokao
Department of Physics,Faculty of Science,Kyoto University
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KUSUMOTO Tadashi
Department of Physics,Faculty of Science,Kyoto University
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Mizusaki Tokao
Department Of Physics Faculty Of Science Kyoto University
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Tsuboi Takefumi
Department Of Physics Faculty Of Science Kyoto University
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Sasagawa Takao
Graduate School Of Frontier Sciences University Of Tokyo
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Nakajima Tetsuo
Department Of Chemistry Faculity Of Science Kyoto University:(present) The Research Institute For Ir
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Kusumoto Tadashi
Department Of Physics Faculty Of Science Kyoto University
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Kawahara Toshio
Department Of Physics Faculty Of Science Kyoto University
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Tsuboi Takefumi
Department of Physics,Faculty of Science,Kyoto University
著作論文
- Superconducting Transitions of Thin Al Films Under The Spin Paramagnetic Limitation
- Reentrant Superconductivity in Aluminum Thin Films under High Magnetic Field
- AC Temperature Calorimetry for Thin Films at Low Temperatures
- Fermi Liquid Effect on Tricritical Superconducting Transitions in Thin TiN Films under the Spin Paramagnetic Limitation : Condensed Matter: Electronic Properties, etc.
- Reentrant Transition in Thin-Film Superconductors of TiN under Spin Paramagnetic Limitation
- Magnetic-Field-Enhanced Superconductivity in Alloy Films of Au-Ge
- Spin Paramagnetic Effect on Magnetic-Field-Enhanced Superconductivity in Layered Thin Films of Au/Ge
- Magnetic-Field-Enhanced Superconductivity in Au/Ge Layered Films
- The Melting Temperature of Thin Lead Films
- Estimation of Pressure Effect on the Curie Temperature for Gold-Manganese Alloy and Mn-Zn Ferrite
- Specific Heat of Superconducting Fine Particles of Tin. II. Fluctuations under Magnetic Field, Critical Field and Transition Temperature
- Tunneling-Coupled Fine Particles of Tin
- Specific Heat of Superconducting Fine Prticles of Tin. : I. Fluctuations in Zero Magnetic Field
- Electrical Conduction in Ensembles of Tunneling-Coupled Fine Particles of Tin. : I. Thermally-Activated Tunneling