KOBAYASHI Makoto | Materials Research Center, TDK Corporation
スポンサーリンク
概要
関連著者
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KOBAYASHI Makoto
Materials Research Center, TDK Corporation
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MIURA Taro
Materials Research Center, TDK Corporation
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Miura Taro
Materials Research Center Tdk Corporation
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Kobayashi M
Mitsubishi Electric Corp. Hyogo Jpn
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Kobayashi M
Toshiba Matsushita Display Technol. Co. Ltd. Fukayn‐shi Jpn
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Nakano M
Advanced Technology Research Laboratories Sharp Corporation
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NAKANO Mutsuko
Materials Research Center, TDK Corporation
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SUZUKI Kazuaki
Materials Research Center, TDK Corporation
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Uchikoba Fumio
Materials Research Center Tdk Corporation
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OKA Hitoshi
Materials Research Center, TDK Corporation
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Oka H
Materials Research Center Tdk Corporation
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Oka Hitoshi
Materials Research Center Tdk Corporation
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TAKAHASHI Takeshi
Materials Research Center, TDK Corporation
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IIJIMA Yasushi
Materials Research Center, TDK Corporation
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Miura Taro
TDK Corporation Materials Research Center
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Kobayashi Makoto
TDK Corporation Materials Research Center
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Iijima Yasushi
Materials Research Center Tdk Corporation
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Takahashi T
Faculty Of Engineering Takushoku University
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Ito Takashi
Materials Research Center, TDK Corporation
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Kobayashi M
Tdk Corporation Materials Research Center
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TACHIMOTO Kazushi
Materials Research Center, TDK Corporation
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Tachimoto Kazushi
Materials Research Center Tdk Corporation
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Suzuki Kazuaki
Materials Research Center Tdk Corporation
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Ishitobi Norimasa
Applied Products Development Department Tdk Corporation
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SHIMODA Hideaki
Applied Products Development Department, TDK Corporation
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KAWAMURA Keizou
Matertals Research Center, TDK Corporation
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Shimoda Hideaki
Applied Products Development Department Tdk Corporation
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Kawamura Keizou
Matertals Research Center Tdk Corporation
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Takahashi Takeshi
Tdk Corporation Materials Research Center
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Kawamura Keizou
Materials Research and Development Division, General R&D Laboratories, Taiyo Yuden Co., Ltd., Takasaki, Gunma 370-3347, Japan
著作論文
- Low-Temperature-Fireable Dielectric Material Pb(Fe_W_)O_3-(Pb,Ca)(Fe_Nb_)O_3 for Microwave Use
- Determination of the Frequency Dependence of Complex Permittivity in the Pseudo-Microwave Range by an Advanced Perturbation Method ( FERROELECTRIC MATERIALS AND THEIR APPLICATIONS)
- Excess-Magnesia Effect on Pb(MgW)0_3-PbTi0_3 Dielectrics and the Aging Phenomenon
- Development of a High-Q Multilayer Ceramic Resonator