OHSATO Hitoshi | Nagoya Institute of Technology, Department of Materials Science and Engineering
スポンサーリンク
概要
関連著者
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大里 齊
名古屋工大 大学院
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OHSATO Hitoshi
Nagoya Institute of Technology, Department of Materials Science and Engineering
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KAKIMOTO Kenichi
Nagoya Institute of Technology, Department of Materials Science and Engineering
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WUNDERLICH Wilfried
Nagoya Institute of Technology; Ceramic Research Laboratory
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Kishi Hiroshi
Taiyo Yuden Co. Ltd.
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MIZUNO Youichi
General R&D Laboratories, TAIYO YUDEN Co., Ltd.
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HAGIWARA Tomoya
General R&D Laboratories, TAIYO YUDEN Co., Ltd.
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OHISHI Yoshihiro
Nagoya Institute of Technology, Department of Materials Science and Engineering
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MIYAUCHI Yasuharu
Materials Research Center, TDK Co.
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ARAKI Nobukazu
Nagoya Institute of Technology
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IWATAKI Tsuyoshi
Nagoya Institute of Technology
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KURIBAYASHI Takahiro
Tohoku University
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KUDOH Yasuhiro
Tohoku University
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MORIKOSHI Hiroki
Materials Reserch Center, TDK Co.
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OHNUMA Kenji
Nagoya Institute of Technology, Department of Material Science
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OZAKI Nobutaka
Nagoya Institute of Technology, Department of Material Science
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YOKOYAMA Y.
Nagoya Institute of Technology, Department Material Science
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NISHIGAKI Susumu
Robert Bosch GmbH
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MIZUNO Youichi
Taiyo Yuden Co. Ltd., Material Development, General Research and Development Laboratories
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HAGIWARA Tomoya
Taiyo Yuden Co. Ltd., Material Development, General Research and Development Laboratories
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KIRIANOV Andrei
Nagoya Institute of Technology, Department of Material Science and Engineering
著作論文
- 24-P-13 Controlled tf of (1-x)Al_2O_TiO_2 Microwave Dielectric Ceramics
- 24-I-01 Correlationship of Site Occupancies of Cations and Microwave Dielectric Properties in Tungstenbronze-Type like Ba_R_Ti_O_ Solid Solutions
- 21-P-19 Crystallographical Investigation on Piezoelectricity of Langasite Crystal under High-Pressure
- 21-P-17 Crystallographic Study on Sm Doped BaTiO_3
- 09-P-15 Electric Resistance of Rare Earth Ruthenate Phases Bi_RE_xRu_2O_7 Predicted by DvXα Calculations and Experimental Confirmation
- 06-O-23 Influence of the Milling Process on Microstructure and Electrical Properties for BaTiO_3-Based Ni-MLCC