Yoneyama Yoshiharu | Department Of Applied Chemistry School Of Engineering Toyama University
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概要
関連著者
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Yoneyama Yoshiharu
Department Of Applied Chemistry School Of Engineering Toyama University
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Tsubaki Noritatsu
Department Of Applied Chemistry Graduate School Of Engineering The University Of Tokyo
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YONEYAMA YOSHIHARU
Department of Material System and Life Science, School of Engineering, Toyama University
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TSUBAKI NORITATSU
Department of Material System and Life Science, School of Engineering, Toyama University
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Zhang Yi
Department Of Analytical Chemistry Shenyang Pharmaceutical University
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Zhang Yi
Department Of Applied Chemistry School Of Engineering University Of Toyama
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Kato Tsutomu
Department Of Chemical And Biochemical Engineering Faculty Of Engineering Toyama University
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Tsubaki Noritatsu
Department Of Applied Chemistry School Of Engineering University Of Toyama
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Yoneyama Yoshiharu
Department Of Applied Chemistry School Of Engineering University Of Toyama
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Yoneyama Yoshiharu
Department Of Chemical And Biochemical Engineering Faculty Of Engineering Toyama University
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Fujimoto Kaoru
School Of Engineering The University Of Kitakyushu
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Wada Kazuyo
Department of Chemistry, Faculty of Science, Toyama University
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YAN Zhang
Department of Molecular Oral Medicine and Maxillofacial Surgery, Division of Frontier Medical Scienc
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MURATA Satoru
Department of Radiology, Nippon Medical School
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KATO Tsutomu
Department of Neurosurgery, Hokkaido University Graduate School of Medicine
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LIU Yong
Departments of Radiology and Radiation Oncology, Hirosaki University Graduate School of Medicine
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米山 嘉治
富山大学大学院理工学研究部(工学)
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Zhang Y
Nanjing Univ. Nanjing Chn
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張 〓
富山大学大学院理工学研究部(工学)
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Zhang Y
Toyama Univ. Toyama Jpn
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Murata S
Kyushu Univ. Fukuoka
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Zhao Tian-sheng
Key Laboratory Of Energy Resources & Chemical Engineering Ningxia University
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Yan Zhang
Department Of Bacterial Infections Research Institute For Microbial Diseases Osaka University
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Kato Tomonori
Department Of Functional Materials Science Faculty Of Engineering Saitama University
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Liu Yong
Department Of Applied Chemistry School Of Engineering University Of Toyama
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FUJIMOTO KAORU
School of Environmental Engineering, The University of Kitakyushu
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NOMURA Masakatsu
Department of Applied Chemistry, Faculty of Engineering, Osaka University
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KOH Kidena
Department of Applied Chemistry, Faculty of Engineeirng, Osaka University
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Kidena K
Osaka Univ. Osaka Jpn
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Nishiyama Norikazu
Division Of Chemical Engineering Graduate School Of Engineering Science Osaka University
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Bao Jun
Department of Applied Chemistry, School of Engineering, University of Toyama
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Tsubaki Noritatsu
Department Of Material System And Life Science School Of Engineering Toyama University
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Kato T
Univ. Tokyo Tokyo
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Bao Jun
National Synchrotron Radiation Lab. University Of Science And Technology Of China
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Nomura M
Department Of Applied Chemistry Faculty Of Engineering Osaka University
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Murata Satoru
Department Of Applied Chemistry Faculty Of Engineeirng Osaka University
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Koh Kidena
Department Of Applied Chemistry Faculty Of Engineeirng Osaka University
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HE Jingjiang
Department of Applied Chemistry, School of Engineering, Toyama University
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XU Bolian
Department of Chemistry, Nanjing University
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Nomura Masakatsu
Department Of Applied Chemistry Faculty Of Engineering Osaka University
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Nomura Masakatsu
Osaka National Research Institute Department For Energy Conversion
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Xu Bolian
Department Of Chemistry Nanjing University
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He Jingjiang
Department Of Applied Chemistry School Of Engineering Toyama University
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YONEYAMA Yoshiharu
Toyama University
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Fujimoto Kaoru
School Of Environmental Engineering The University Of Kitakyushu
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TAKEMOTO Tomokazu
Department of Applied Chemistry, School of Engineering, Toyama University
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ANDO Shigehiro
Department of Chemical and Biochemical Engineering, Faculty of Engineering, Toyama University
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HAMAJIMA Keishi
Department of Chemical and Biochemical Engineering, Faculty of Engineering, Toyama University
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HAGINO Takaaki
Department of Chemical and Biochemical Engineering, Faculty of Engineering, Toyama University
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Ando Shigehiro
Department Of Chemical And Biochemical Engineering Faculty Of Engineering Toyama University
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Hagino Takaaki
Department Of Chemical And Biochemical Engineering Faculty Of Engineering Toyama University
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Hamajima Keishi
Department Of Chemical And Biochemical Engineering Faculty Of Engineering Toyama University
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Liu Yong
Department Of Anatomy School Of Medicine Xi'an Jiaotong University
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Takemoto Tomokazu
Department Of Applied Chemistry School Of Engineering Toyama University
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Murosawa Yoshiko
Department of Chemistry, Faculty of Science, Toyama University
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XU Bolian
Department of Applied Chemistry, School of Engineering, Toyama University
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Kato Tsutomu
Department of Industrial Chemistry, Faculty of Engineering, Toyama University
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Yoneyama Yoshiharu
Department of Industrial Chemistry, Faculty of Engineering, Toyama University
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Akaki Yu
Department of Industrial Chemistry, Faculty of Engineering, Toyama University
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Yamamoto Koji
Department of Cardiology, Nagoya City University Medical School
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Ejiri Emiko
Department of Chemistry, Faculty of Science, Toyama University
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Zhang Yi
Department of Material System and Life Science, School of Engineering, Toyama University
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Juni Yasushi
Department of Chemistry, Faculty of Science, Toyama University
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Kato Tadahito
Department of Chemistry, Faculty of Science, Toyama University
著作論文
- Chemical Effect and Spatial Effect of New Bimodal Catalysts for Fischer-Tropsch Synthesis
- Solubilization of Meso-Carbon Materials by Butylation with Dibutylzinc and Butyl Iodide
- 2-20 Preparation of Mesoporous, Cu/ZnO Catalyst and Its, Application in Low-Temperature Methanol Synthesis
- 2-19 Effective conversion of CO2 to, methanol employing a novel low-temperature process : effects of preparation method and compositions of catalysts
- Designing a New Kind of Capsule Catalyst and Its Application for Direct Synthesis of Middle Isoparaffins from Synthesis Gas
- Selective Conversion of Dimethyl Ether to Propylene and Light Olefins over Modified H-ZSM-5
- Effect of Butylation on Hydropyrolysis of Coal
- The synthesis of dibenzo-annelated annulenes using reductive coupling. Bisdehydrodibenzo(14)-, -(16)-, -(18)-, -(20)-, and -(22)annulene.
- Chemical Effect and Spatial Effect of New Bimodal Catalysts for Fischer-Tropsch Synthesis.
- Model compound studies of coal liquefaction with zinc-butyl iodide under mild conditions.
- Syntheses and properties of .ALPHA.-ethyl-substituted bisdehydro(13)annulenone and its benzo-annelated derivatives.