Yoshida Katsukuni | Institute Of Atomic Energy Kyoto University
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概要
関連著者
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Yoshida Katsukuni
Institute Of Atomic Energy Kyoto University
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Yoshida Katsukuni
Institute of Atomic Energy, Kyoto University
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吉田 起國
京大院エネルギー科学
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吉田 起國
京大原子エネルギー研
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吉田 起國
京大原研
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Yamada K
Department Of Physics Tohoku University
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松川 倫明
Department Of Materials Science And Technology Iwate University
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OGASAWARA Haruhiko
Institute for Solid State Physics, University of Tokyo
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Ogasawara H
Spring-8:(present Address)school Of Physics And Physics Research Division Seoul National Universty
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Ogasawara Haruhiko
Institute For Solid State Physics University Of Tokyo
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Noto Koshichi
Faculty of Engineering, Iwate University
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MATSUKAWA Michiaki
Faculty of Engineering,Iwate University
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Matsukawa Michiaki
Faculty Of Engineering Iwate University
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Ogasawara Hiromitsu
Department Of Materials Science And Technology Iwate University
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Ogasawara Hiromitsu
Faculty Of Engineering Iwate University
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Noto K
Faculty Of Engineering Iwate University
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Noto K
Iwate Univ. Morioka
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Noto Koshichi
Faculty Of Engineering Iwate Univ.
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Tatezaki Fumiaki
Faculty of Engineering, Iwate University
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Tatezaki Fumiaki
Faculty Of Engineering Iwate University
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Yoshida Katsukuni
Institute Of Atomic Energy Kyoto Universoty
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Ueda Sizumasa
Institute Of Atomic Energy Kyoto University
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Nakamura F
Department Of Metal Science And Technology Faculty Of Engineering Kyoto University
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Nakamura Fujinobu
Department Of Metal Science And Technology Kyoto University
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YOSHIDA Katsukuni
Institute of Atomic Energy,Kyoto University
著作論文
- Thermal Transport and Percolative Transition in the Ag-BPSCCO Composite System
- Structural Effect on the Galvanomagnetic Properties of a Metal with Granular Inclusions
- Experimental Uncertainty in Determining the Critical Exponent of the Percolative Conductivity of Two-Phase Mixtures
- An Anomalous Behavior of the Longitudinal Magnetoresistance in Semimetals
- PERCOLATION PROCESS IN ANISOTROPIC CLUSTER-STRUCTURE OF A TWO-PHASE COMPOSITE
- Percolative Conduction in a Composite System of Metal and Ceramics
- Anisotropic Effect of Structural Constituents of Mixtures on Effective Medium Percolation
- Anomalous Electric Fields in Semimetals under High Magnetic Fields
- A Geometrical Transport Model for Inhomogeneous Current Distribution in Semimetals under High Magnetic Fields
- Dielectric Character Due to the Percolative Growth of Clusters in a Metal-Ceramics Mixture