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Related Researchers in Our University

Kishimoto, Yutaka (43.9%) / Professor   [Detail]
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Sex: Male Year of Birth: 1960 A.D.
Phone: +81 - 88 - 656 - 7548 E-mail:  y u t a k a (@) p m . t o k u s h i m a - u . a c . j p 
Academic Degree: 工学博士 Field of Study: Solid State Physics
His Lecture: Presentation Method (D) (Graduate School), Graduation Work (Bachelor Course), Fundamentals of Wave Motion (Bachelor Course), Mechanics (Common Curriculum), Electricity and Magnetism (Common Curriculum), Laboratory in General Physics (Bachelor Course), Laboratory in General Physics (Bachelor Course), Engineering of Correlated Electron Matter (Graduate School), Seminar on Natural Sciences (Bachelor Course), Technical English Fundamentals 2 (Bachelor Course), Fundamentals of Wave Motion (Bachelor Course), Quantum mechanics and advanced lecture in quantum physics (Graduate School), Introductory Laboratory in Physics for Engineering Sciences (Bachelor Course), Laboratory for Physical Science 1 (Bachelor Course), Laboratory for Physical Science 2 (Bachelor Course), Statistical Mechanics for Engineering Sciences (Bachelor Course), Mechanics (Bachelor Course), Fundamental Mechanics (Bachelor Course), Superconductivity and superconducting materials (Graduate School), Reading Scientific Papers (Bachelor Course), Electricity and Magnetism (Bachelor Course), Exercise in Electricity and Magnetism (Bachelor Course)
Subject of Study: 強結合超伝導体のエネルギーギャップの異方性の核磁気共鳴法による研究, 銅硫化物スピネル化合物の電子状態の核磁気共鳴法による研究, 非晶質高濃度近藤物質の基底状態の核磁気共鳴法による研究 (強結合超伝導体, A15化合物, C15化合物, 重い電子系物質, 超伝導エネルギーギャップの異方性, 銅硫化物スピネル, 金属·絶縁体転移, 電荷密度波, 非晶質, 核磁気共鳴(NMR)法)
(Ohno, Takashi) (36.1%) / Part-time Lecturer   [Detail]
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Sex: Male Year of Birth: 1945 A.D.
Academic Degree: 工学博士 Field of Study: Solid State Physics
Subject of Study: 高温超伝導体におけるアイソトープ効果, 磁性超伝導体の電子状態のNMRによる研究, 非晶質重い電子系物質の基底状態の研究, 強結合超伝導体の基底状態 (high-Tc superconductor, 磁性超伝導体, 強結合超伝導体, 重い電子系物質, アイソトープ効果, 異方的エネルギーギャップ, 電子の基底状態, nuclear magnetic resonance, 帯磁率, 電気抵抗, 比熱)
Nakamura, Koichi (5.6%) / Professor   [Detail]
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Sex: Male Year of Birth: 1964 A.D.
Phone: E-mail:  n a k a m u r a . o . k o i c h i (@) t o k u s h i m a - u . a c . j p 
Academic Degree: Doctor of Science Field of Study: Solid State Physics
His Lecture: Presentation Method (D) (Graduate School), Presentation Method (M) (Graduate School), Elements of Mechanics 1 (Bachelor Course), Elements of Mechanics 2 (Bachelor Course), Introduction to Mechanics (Bachelor Course), Graduation Work (Bachelor Course), Solid State Ionics (Graduate School), Solid State physics (1) (Bachelor Course), Mechanics (Common Curriculum), Electricity and Magnetism (Common Curriculum), Laboratory in General Physics (Bachelor Course), Seminar on Natural Sciences (Bachelor Course), Ethics for Engineers and Scientists (Common Curriculum), Technical English Fundamentals 2 (Bachelor Course), Introductory Laboratory in Physics for Engineering Sciences (Bachelor Course), Laboratory for Physical Science 1 (Bachelor Course), Laboratory for Physical Science 2 (Bachelor Course), Statistical Mechanics for Engineering Sciences (Bachelor Course), Mechanics (Bachelor Course), Analytical mechanics 1 (Bachelor Course), Analytical mechanics 2 (Bachelor Course), Exercise in Mechanics (Bachelor Course), Quantum Mechanics for Engineering Sciences (Bachelor Course), Reading Scientific Papers (Bachelor Course), Radio Frequency Solid State Physics (Graduate School)
Subject of Study: Li+ ion difusion in cathode materials for Li ion rechargeable batteries, Li+ ion diffusion in Li alloys, Local changes in crystal structure and ion dynamics by mechanical milling, Development of non-linear resonant ultrasonic method (Cathode and anode materials for Li ion rechargeable batteries, Super ionic conductor, Li transition metal oxide, Ion diffusion, nuclear magnetic resonance, Mechanical milling, Ultrasonic method, 電気伝導測定)
Moriga, Toshihiro (2.2%) / Professor   [Detail]
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Sex: Male Year of Birth: 1965 A.D.
Phone: +81 - 88 - 656 - 7423 E-mail:  m o r i g a (@) t o k u s h i m a - u . a c . j p 
Academic Degree: Dr., Sci. Field of Study: Inorganic Materials Chemistry
His Lecture: Outline of Chemical Science and Technology (Common Curriculum), Presentation Method (D) (Graduate School), Advanced Topics in Chemical Process Engineering (Graduate School), Special Lecture on Chemical Science and Technology 3 (Bachelor Course), International Advanced Technology and Science 1 (Graduate School), International Advanced Technology and Science 2 (Graduate School), Basic Inorganic Chemistry (Bachelor Course), Industrial Organic & Inorganic Chemistry (Bachelor Course), Physical Properties of Materials (Bachelor Course), Advanced Materials Science (Graduate School), Inorganic Chemistry (Bachelor Course), Surface Science and Technology (Graduate School)
Subject of Study: Research and development of novel transparent conducting oxides, Synthesis and structural analysis of metal oxynitrides, Research and Development of materials containing rare-earth metal oxides, Structural chemistry on combustion catalysts, Basic research on electrode materials for lithium ion secondary battery (transparent conducting oxides, metal oxynitrides, Phosphors, superionic conductors, X-ray diffractometry, X-ray spectroscopy)
Inukai, Munehiro (1.7%) / Associate Professor   [Detail]
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Sex: Male Year of Birth: 1979 A.D.
Phone: E-mail:  i n u k a i . m u n e h i r o (@) t o k u s h i m a - u . a c . j p 
Academic Degree: Doctor of science Field of Study: chemical physics
His Lecture: Graduation Work (Bachelor Course), Mechanics (Common Curriculum), Electricity and Magnetism (Common Curriculum), Laboratory in General Physics (Bachelor Course), Seminar on Natural Sciences (Bachelor Course), Technical English Fundamentals 2 (Bachelor Course), Quantum mechanics and advanced lecture in quantum physics (Graduate School), Introductory Laboratory in Physics for Engineering Sciences (Bachelor Course), Laboratory for Physical Science 1 (Bachelor Course), Laboratory for Physical Science 2 (Bachelor Course), Analytical Mechanics (Bachelor Course), Quantum Mechanics for Engineering Sciences (Bachelor Course), Reading Scientific Papers (Bachelor Course)
Subject of Study: New application and hardware development in solid-state NMR