Search Results1-20 of  31

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  • MORIMOTO Hideyuki ID: 9000000020144

    Department of Materials Science, Faculty of Engineering, Tottori University (2001 from CiNii)

    Articles in CiNii:3

    • Preparation of the Perovskite-type Oxide Ca_<0.9> Nd_<0.1-y> MnO_<3-δ> and Its Cathodic Properties in Alkaline Solutions (1996)
    • Catodic Property of High Conductivity Ceramic Ca_<0.9> La_<0.1> MnO_<3-δ> in Saline Solutions (2001)
    • High Lithium Ion Conductivity of Glass-Ceramics Derived from Mechanically Milled Glassy Powders (2001)
  • MORIMOTO Hideyuki ID: 9000404093667

    Department of Applied Materials Science, Graduate School of Engineering, Osaka Prefecture University (2003 from CiNii)

    Articles in CiNii:1

    • Cathode Properties of Amorphous 66.7V<sub>2</sub>O<sub>5</sub> • 33.3FeOOH Powders Obtained by Mechanical Milling Technique (2003)
  • MORIMOTO Hideyuki ID: 9000404321308

    Articles in CiNii:1

    • Preparation of the Perovskite-type Oxide Ca<sub>0.9</sub>Nd<sub>0.1-y</sub>MnO<sub>3-δ</sub> and Its Cathodic Properties in Alkaline Solutions (1996)
  • MORIMOTO Hideyuki ID: 9000404493232

    Department of Materials Science, Faculty of Engineering, Tottori University (2001 from CiNii)

    Articles in CiNii:1

    • Cathodic Property of High Conductivity Ceramic Ca<sub>0.9</sub>La<sub>0.1</sub>MnO<sub>3−δ</sub> in Saline Solutions (2001)
  • MORIMOTO Hideyuki ID: 9000000020144

    Department of Materials Science, Faculty of Engineering, Tottori University (2001 from CiNii)

    Articles in CiNii:3

    • Preparation of the Perovskite-type Oxide Ca_<0.9> Nd_<0.1-y> MnO_<3-δ> and Its Cathodic Properties in Alkaline Solutions (1996)
    • Catodic Property of High Conductivity Ceramic Ca_<0.9> La_<0.1> MnO_<3-δ> in Saline Solutions (2001)
    • High Lithium Ion Conductivity of Glass-Ceramics Derived from Mechanically Milled Glassy Powders (2001)
  • MORIMOTO Hideyuki ID: 9000000898982

    Toyohashi University of Technology (1996 from CiNii)

    Articles in CiNii:1

    • Adaptive Fuzzy Control for a Stand-Alone Photovoltaic/Wind Generating System (1996)
  • MORIMOTO Hideyuki ID: 9000001387483

    Department of Chemistry, Faculty of Engineering, Gunma University (2005 from CiNii)

    Articles in CiNii:1

    • High-rate Lithium Intercalation into Composite Electrodes of Crystalline β-FeOOH and Carbon Powder (2005)
  • MORIMOTO Hideyuki ID: 9000001786013

    NEOMAX Co. (2006 from CiNii)

    Articles in CiNii:1

    • In Situ Observations of Magnetization Process in Alnico Magnets by Electron Holography and Lorentz Microscopy (2006)
  • MORIMOTO Hideyuki ID: 9000001787784

    NEOMAX CO., LTD. (2006 from CiNii)

    Articles in CiNii:1

    • Recent Development of High Performance Nd-Fe-B Sintered Magnets (2006)
  • MORIMOTO Hideyuki ID: 9000003634932

    Department of Applied Materials Science, Graduate School of Engineering, Osaka Prefecture (2003 from CiNii)

    Articles in CiNii:4

    • Cathode Properties of Amorphous 66.7V_2O_5・33.3FeOOH Powders Obtained by Mechanical Milling Technique (2003)
    • Preparation and Characterization of SnO-Based Glasses as Anode Materials for Lithium Secondary Batteries (2001)
    • Formation Process of60Li_2S・40SiS_2 Amorphous Materials with High Lithium Ion COnductivity Prepared by Mechanical Milling (2000)
  • MORIMOTO Hideyuki ID: 9000004447188

    University of California, Berkeley. University Libraries (1996 from CiNii)

    Articles in CiNii:1

    • Cataloging Operations at Large Academic Libraries in North America : Current Situations and Future Directions(<Special feature> The Future of Library Cataloging) (1996)
  • MORIMOTO Hideyuki ID: 9000015750665

    Articles in CiNii:2

    • 第4分科会を中心に (特集:[専門図書館協議会]全国研究集会--立ち上がれ! ライブラリアン NEXTステージへ…) -- (平成19年度全国研究集会に参加して) (2007)
    • TRC MARC Bibliographic Records Loaded in RLIN: Their Compatibility with LC Practices for Japanese Language Monographic Title Cataloguing (2003)
  • MORIMOTO Hideyuki ID: 9000017274350

    Department of Chemistry and Chemical Biology, Graduate School of Engineering, Gunma University (2012 from CiNii)

    Articles in CiNii:2

    • Electrochemical Properties of Iron Oxides as High-Capacity Negative Electrodes for Lithium Secondary Batteries (2010)
    • Electrochemical Properties of High-Capacity SiO-C Anodes Prepared by the Addition of Iron Oxide Powder for Lithium Secondary Batteries (2012)
  • MORIMOTO Hideyuki ID: 9000020066370

    Articles in CiNii:1

    • Initiation and Growth Behavior of Small Surface Fatigue Cracks on Forged P/M Aluminum Alloys. (1993)
  • MORIMOTO Hideyuki ID: 9000020269273

    Articles in CiNii:1

    • Special Issue on Fracture Mechanics. Initiation and Growth Behavior of Small Surface Fatigue Cracks in Al-15Zn Powder Metallurgy Alloy. (1994)
  • MORIMOTO Hideyuki ID: 9000022005681

    Department of Chemistry and Chemical Biology, Graduate School of Engineering, Gunma University (2010 from CiNii)

    Articles in CiNii:1

    • Electrochemical Properties of Iron Oxides as High-Capacity Negative Electrodes for Lithium Secondary Batteries (2010)
  • MORIMOTO Hideyuki ID: 9000022018543

    Department of Chemistry and Chemical Biology, Graduate School of Engineering, Gunma University (2012 from CiNii)

    Articles in CiNii:1

    • Electrochemical Properties of High-Capacity SiO-C Anodes Prepared by the Addition of Iron Oxide Powder for Lithium Secondary Batteries (2012)
  • MORIMOTO Hideyuki ID: 9000240093251

    群馬大学大学院工学研究科 (2012 from CiNii)

    Articles in CiNii:1

    • ケイ素を用いたリチウム二次電池新材料の展開 (2012)
  • MORIMOTO Hideyuki ID: 9000258460435

    Department of Applied Materials Science, Graduate School of Engineering, Osaka Prefecture University (2004 from CiNii)

    Articles in CiNii:1

    • Characterization of SnO-M<sub>x</sub>O<sub>y</sub> (M=B and P) Glassy Anode Materials for Lithium Secondary Batteries Prepared by Melt-Quenching and Mechanical Milling (2004)
  • MORIMOTO Hideyuki ID: 9000258460459

    Department of Applied Materials Science, Graduate School of Engineering, Osaka Prefecture University (2004 from CiNii)

    Articles in CiNii:1

    • Lithium Ion Conducting Glasses and Glass-Ceramics in the Systems Li<sub>2</sub>S-M<sub>x</sub>S<sub>y</sub> (M=Al, Si and P) Prepared by Mechanical Milling (2004)
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