<ul><li>Words of thanks, comittee</li><li>Preface</li><li>Plenary Session</li><li>Research Trends of Magnetic Amorphous Oxides</li><li>Future Trends in Soft Ferrite Processing</li><li>Section 1: Ferrite Processing - Powder Preparation</li><li>Long Term Availability of Spray Roasted Iron Oxides for the Production of Ferrites</li><li>Production of Highly Pure Oxide Using a Solvent Extraction Method</li><li>Preparation and Properties of Fine Particle Mg-Mn Ferrite</li><li>Formation of Spinels from Cerium and Europium Ferrocyanides</li><li>Synthesis of Ultrafine Particles of Strontium Ferrite by Chemical Coprecipitation with Sodium Hydroxide</li><li>Lithium Insertion into ?-Fe<sub>2</sub>O<sub>3</sub></li><li>Preparation of Alkaline Earth Ferrites from Decomposition of Malonate Solid Solutions</li><li>Reactions</li><li>Oxidation Sate/Green Strength Relationships in Mn-Zn Ferrites</li><li>Reaction Mechanism of Ferrite-Formation by Oxidation of Fe (II) ION in Aqueous Solution</li><li>The Precipitation of Hematite from FeZn Ferrites</li><li>Structural and Oxidation State Transformations during Sintering of Mn-Zn Ferrites</li><li>Preparation of High Density Mn-Zn Ferrite</li><li>Morphological Study on the Oxidation of Mn-Zn Ferrite</li><li>Stabilisation Studies on Chromium Dioxide Powders</li><li>Formation of New Hexaferrite with Mixed ?-Alumina and Magnetoplumbite Structure</li><li>Manufacturing</li><li>Modern Technology for Modern Ferrites</li><li>On the Plastification of PVA by PEG</li><li>Mercury Porosimetry in Ferrite Green Body</li><li>Modern Mixing, Grinding and Pelletizing Procedures for the Preparation of Oxidic Raw Materials, Especially of Ferrite Raw Materials</li><li>Section 2: Sintering and Microstructure</li><li>Sintering and Microstructure Development of Sr Hexaferrites</li><li>Exaggerated Grain Growth in Manganese Zinc Ferrite</li><li>Effect of Hot Isostatic Pressing Treatment on Densification of Lithium Zinc Ferrite Materials</li><li>The Influence of SiO<sub>2</sub>/GeO<sub>2</sub> Additions on the Grain Growth Kinetics and Densification of Ni-Zn Ferrites</li><li>Development of Glass Ceramics with Hexaferrites as Magnetic Phases</li><li>Section 3: Physics of Ferrites - Structure, Electrical and Elastic Properties</li><li>High Resolution Electron Microscopy and Microanalysis of Ferrites and Cuprates</li><li>Phenomenology of the Acoustic Emission along Hysteresis Loop of Polycrystalline Ferrimagnets</li><li>Influence of Microstructure and Composition on the Acoustic Emission in Polycrystalline Ferrimagnets</li><li>AC Electrical and Magnetic Measurements of a NiZn Ferrite</li><li>Dispersion in Electrical Properties of Titanium Substituted Lithium Ferrites</li><li>Dielectric Properties and X-Ray Photo Electron Spectroscopy Studies on Substituted Lithium Ferrites</li><li>Electrical and Magnetic Properties of Normal and Hot Pressed Mn<sub>0.6</sub>Zn<sub>0.4-x</sub>Ni<sub>x</sub>Fe<sub>2</sub>O<sub>4</sub> Ferrites</li><li>Electrical and Magnetic Properties of Sn<sup>4+</sup> Substituted Ni-Cd Ferrites</li><li>Hopping Mechanism in Fe<sub>3-x</sub>Zn<sub>x</sub>O<sub>4</sub></li><li>Anomalous D.C. Resistivity and Microstructural Characterization of Sn<sup>4+</sup> and Zn<sup>2+</sup> Substituted Nickel Ferrites</li><li>On Some Unconventional Dielectric Relaxation in Epoxy-Ferrite Composites</li><li>Pentavalent Vanadium Ion Addition to Ni-Zn Ferrites-Dielectric Properties</li><li>Magnetostriction of Terbium-Yttrium-Iron Garnets</li><li>Piezomagnetic Properties of the Nickel Base Ferrites</li><li>Temperature and Magnetic Field Influence on the Magnetomechanical Coupling Coefficient of the Ni<sub>0.953</sub> Co<sub>0.027</sub> Mn<sub>0.02</sub> Fe<sub>2</sub>O<sub>4</sub> Ferrite</li><li>The Dependence of Strength on Composition and Processing in MnZn Ferrites</li><li>Elastic Properties of Strontium Borate Ferrites by Ultrasonics</li><li>Compressibility and Mechanical Strength of Mn-Zn Ferrites with PVA and PEG Binders</li><li>Composition and Magnetic Field Dependence of the Elastic Moduli of Polycrystalline Ferrites</li><li>Moessbauer Studies</li><li>Cation Distribution in Co-Ti Substituted Barium Ferrite</li><li>Magnetic Properties and Moessbauer Studies of Hot Pressed Mn<sub>0.6</sub>Zn<sub>0.4-x</sub>CO<sub>x</sub>Fe<sub>2</sub>O<sub>4</sub>Ferrites</li><li>Effect of Nonstoichiometry on the Moessbauer Spectra and Magnetic Properties in Yttrium-Gadolinium-Iron Garnet</li><li>Conversion Electron Moessbauer Spectroscopy Study on a-Fe<sub>74</sub>Ni<sub>2</sub>Cr<sub>4</sub>B<sub>12</sub>Si<sub>8</sub> Alloy</li><li>Local Canted State in Li-A1 Ferrite</li><li>Moessbauer and Magnetic Studies of Ni <sub>0.4</sub>Zn<sub>0.6-2x</sub>Li<sub>x</sub>Fe<sub>21x</sub>O<sub>4</sub></li><li>Moessbauer and Magnetic Studies of Titanium Doped Nickel Ferrite</li><li>Hyperfine Interaction Studies in Li-Cr-Ti Ferrites and the Possibility of Existence of a Spin Glass Phase</li><li>Influence of Tetravalent Tin Substitution on the Properties of Nickel Ferrites</li><li>Structural Transport Magnetic, Moessbauer and Infra-Red Studies of the Spinel Ferrite System Zn<sub>1-x</sub>Co<sub>x</sub>FeCrO<sub>4</sub></li><li>Magnetic Properties</li><li>Neutron Diffraction Survey of Perturbed Magnetic Ordering in Disordered Spinels</li><li>Magnetic Properties of Co and Ti CO-Substituted Mn Zn Ferrites</li><li>Non-Repeatability of Disaccommodation, an Investigation of High Permeability Ferrites</li><li>Magnetic Properties of Sr-La-Nd-Pr System Ferrite Magnets</li><li>The Effect of A1<sub>2</sub>O<sub>3</sub> Substitution on the Microstructure and Coercivity of Polycrystalline SrFe<sub>12</sub>O<sub>19</sub></li><li>High Field Magnetization Study of Doped Barium Ferrite</li><li>Time and Temperature Dependence of the Thermoremanence and Hysteresis Loop in Li-Ti-Ferrite</li><li>Exchange Split Ground State for Fe<sup>2+</sup> Ions in High Permeability Mn-Zn Ferrites</li><li>Study of Tetravalent Ge<sup>4+</sup>, Ti<sup>4+</sup> and Sn<sup>4+</sup> Ions Substituted Magnesium Ferrites</li><li>Magnetic Properties of Substituted Lithium Ferrites</li><li>Lattice Parameter and Bulk Magnetic Studies of Zr Substituted Cu-Zn Ferrites</li><li>Sperimagnetism in Lithium Vanadium Ferrities</li><li>On Enhancing of Weak Ferromagnetism of Haematite Doped with Lithium</li><li>Anisotropy</li><li>Magnetic Anisotropy of Hexaferrites</li><li>Calculation on the Temperature Dependence of Magnetocrystalline Anisotropy of Ferrite BaFe<sub>12</sub>O<sub>19</sub></li><li>The Calculation of the Magnetcristalline Anisotropy of BaM Ferrite</li><li>Torque and FMR Studies in Co-Ag Multilayers</li><li>Stress Induced Magnetic Anisotropy of YBi<sub>2</sub>Fe<sub>5-x</sub>Ga<sub>x</sub>O<sub>12</sub> Sputtered Films</li><li>Section 4: Thin Films and Crystal Growth - Thin Films</li><li>Magnetic Properties of Spinel/BaM Ferrites Multilayered Films by Alternate Sputtering</li><li>Magnetic Properties and Structure of Bias-Sputtered Fe-Cu Films by Facing Targets Sputtering</li><li>Crystallinity and Magnetic Properties of Co-Cr Thin Films Prepared by Multilayer Sputtering Technique</li><li>Synthesis of Ferrite Films by Pulsed Laser Evaporation Process</li><li>Ba-Ferrite Thin Films by Pyrolisis Process</li><li>Growth and Characterization of Elcetrochemically Formed Thin Film Ferrites</li><li>Preparation of Mn-Zn Ferrite Thin Films with Good Crystallinity at Substrate Temperature of 100 degrees C</li><li>Magnetic Properties of Fe/Ti Multilayered Films Deposited by Facing Targets Sputtering</li><li>Crystal Growth</li><li>Crystal Structure and Magnetic Properties of the Lanthanum-Sodium Hexaferrite La<sub>0.7</sub>Na<sub>0.3</sub>Fe<sub>12</sub>O<sub>19</sub></li><li>Characterization of Mn-Zn Ferrite Single Crystals with Trace Additives</li><li>Crystal Structure and Magnetic Properties of New Ionic Conductors ?"-Aluminia-Like Ferrites and Derived Phase by Ion Exchange</li><li>Section 5: Power Ferrites</li><li>Some Aspects of Ferrite Cores for H.F. Power Transformers</li><li>Power Ferrites; Performance and Microstructure</li><li>A New Power Ferrite For High Frequency Switching Power Supplies</li><li>Domain Wall Loss and Rotational Loss in High Frequency Power Ferrites</li><li>Nickel Zinc Ferrites for Induction Accelerators</li><li>Relations between Grain Boundary Structure and Hysteresis Losses in Mn-Zn Ferrites for Power Applications</li><li>Stress-Insensitive Ferrite for Microinductors</li><li>Section 6: Instrumentation and Measurements</li><li>Measurement of Complex Magnetic Permeability and Complex Dielectric Permittivity of Ferrites between 50 GHZ and 400 GHz</li><li>New Approach to the Determination of Spatial Features of Granular Structure</li><li>Development of Toroidal Plasma (TP) Magnetron Sputtering System for Deposition of Magnetic Films</li><li>Discussion on the Measuring Condition of Air Permeability Method</li><li>Section 7: High Temperature Superconductivity</li><li>High-Temperature Superconductivity in Cuprates</li><li>Magnetization Studies of Superconducting Oxide BiSrCaCu<sub>2</sub>O<sub>x</sub></li><li>Preparation and Superconducting Properites of the Bi-Sr-Ca-Cu System</li><li>Magnetic Investigation of Superconducting Bi<sub>0.7</sub>Pb<sub>0.3</sub>SrCaCu<sub>1.8</sub>O<sub>x</sub> Ceramics</li><li>Influence of the Synthesis Conditions on the Superconducting Behavior of the Bi-Compounds</li><li>Introduction to the Mechanism of High Temperature Superconductivity of Oxides Proposed by the New Frames in Physics and a Study on BiPbSrCaCu-O</li><li>Theory of High Tc Superconductivity</li><li>High Temperature Thermoelectric Behavior of the High T<sub>c</sub> Superconductor, Y<sub>1</sub>Ba<sub>2</sub>Cu<sub>3</sub>O<sub>x</sub></li><li>XRD, AC-Susceptibility, XPS and XAS Measurements on YBa<sub>2</sub> (Cu<sub>1-x</sub>V<sub>x</sub>)<sub>3</sub>O<sub>7-?</sub>; O ? x ? 0.08</li><li>Valence, Magnetism and the New Superconductors</li><li>Structure and Superconductivity in Y<sup>3+</sup>Ba<sup>2+</sup><sub>2-x</sub>Na<sup>+</sup><sub>x</sub>Cu<sup>3+</sup><sub>3-y</sub>Cu<sup>2+</sup><sub>y</sub>O<sup>2-</sup><sub>8-(x+y)/2-?</sub></li><li>Electron Microscopy and ESR Studies on Single Crystals of YBa<sub>2</sub> Cu<sub>3</sub>O<sub>7-?</sub> and EuBa<sub>2</sub> Cu<sub>3</sub> O<sub>7-?</sub></li><li>Enhancement of (001) XRD Peaks in YBa<sub>2-x</sub> Cu<sub>3-Y</sub> O<sub>7-?</sub> Compounds</li><li>Magnetic Properties of YBa<sub>2</sub>Cu<sub>3(1-x)</sub>Fe<sub>3x</sub>O<sub>7-?</sub></li><li>Oxidation States and Compostition of YBaCuO Thin Films</li><li>Phase Relationships and Crystal Growth in the Y-Ba-Cu-(O) System</li><li>Thermal Analytical Studies of Formation of YBa<sub>2</sub>Cu<sub>3</sub>O<sub>x</sub></li><li>Resistivity Measurements for the New Semiconducting System YBa<sub>2</sub>Cu<sub>3</sub>O<sub>x</sub></li><li>Thermogravimetric Analysis of YBa<sub>2</sub>Cu<sub>3</sub>O<sub>7-?</sub> Phase Formation</li><li>Section 8: Amorphous Materials</li><li>High Field Magnetization Studies in Amorphous Co-Er-B Alloys</li><li>Prependicular Anisotropy of Amorphous Magnetic Oxide Films and Their Texture</li><li>Preparation and Magnetic Property of Glassy Fe<sub>2</sub>O<sub>3</sub> and Fe<sub>2</sub>O<sub>3</sub>-SrO-B<sub>2</sub>O<sub>3</sub></li><li>Changes in Magnetic Properties of (Fe/Co)-N Multilayered Films by Annealing</li><li>The Effect of Positive Temperature Coefficient of Resistivity in Fe and Fe-Ni Based Amorphous Alloys</li><li>A Model for Magnetic Hysteresis Loops of Amorphous Ribbons</li><li>On the Crystallization of Garnet Phase in Silicate Glass with (Ag<sub>2</sub>O + As<sub>2</sub>O<sub>3</sub>) as Nucleant</li><li>Effect of Composition and Annealing on Magnetic Properties and Wear Resistance in some Co-Based Metallic Glasses</li><li>Incoherent Electron-Magnon Scattering in Fe<sub>80-x</sub>V<sub>x</sub> (SiB)<sub>12</sub></li><li>Magnetization Study of Fe<sub>81</sub>B<sub>13.5</sub>Si<sub>3.5</sub>C<sub>2</sub> and Fe<sub>67</sub>Co<sub>18</sub>B<sub>14</sub>Si<sub>1</sub></li><li>Magnetic Properties of Amorphous Ferrite Li<sub>2</sub>O-Bi<sub>2</sub>O<sub>3</sub>-Fe<sub>2</sub>O<sub>3</sub> System</li><li>Section 9: Recording</li><li>Recent Advances of VTR Heads and Their Future Trends</li><li>Co-CoO Evaporated Film for Perpendicular Magnetic Recording</li><li>Planar Hybrid Head Structure Process and Performances Potentiality</li><li>Thermal Aging of Co, Ti Substituted Barium Ferrite Particles for Magnetic Recording Media</li><li>On the Stability Properties of New Semidoped/Stabilized Cobalt Modified Recording Oxides</li><li>CoOx Films with Perpendicular Magnetic Anisotropy</li><li>Present Status of Ferrite Heads and Their Materials</li><li>Preparation of Cobalt Substituted ?-Fe<sub>2</sub>O<sub>3</sub></li><li>Synthesis of Doped Baryum Hexaferrite Pigments for Magnetic Recording</li><li>Section 10: Magneto-Optics and Bubbles</li><li>Faraday Rotation of Trivalent Ytterbium in the Garnet Structure</li><li>Magneto-Optical Effect in Alumite Film Having Mircropores Electrodeposited with Ni</li><li>New Garnet Films with Giant Faraday Rotation</li><li>Magnetic Properties of Orthorhombic Bi-Garnet Films after Heat Treatment</li><li>Magnetic and Magneto-Optical Properties of Bismuth Substituted Europium Iron Garnet LPE Films</li><li>Dependence of Growth-Induced Anisotropy on Growth Rate in Garnet L P E Films</li><li>Section 11: Microwave Materials and Devices - Synthesis</li><li>Inhomogeneities and the Spurios Modes in GaYIG</li><li>Hysteresis Loop Studies of Substituted Lithium Ferrite for Microwave Latching Applications</li><li>Ba-Co-Ti Based Ferrite Impregnated Polyurethane Paints as Microwave Absorbers</li><li>Composites Based on Waste-Ferrites as Microwave Absorber</li><li>Resonance and Relaxation</li><li>FMR Linewidth of High-Density BaFe<sub>12</sub>O<sub>19</sub> Ceramics and of C-Axis Alignment</li><li>A Discovery of Exchange-Multiplicated Energy Gap at the Second Order Phase Transition in Orthoferrites</li><li>NMR Studies of <sup>165</sup>Ho in Erbium Iron Garnet</li><li>Millimeter Wave Ferromagnetic Resonance in Ferrites</li><li>FMR Studies in Charge Uncompensated Ge-Substituted Garnet Films</li><li>Gain Size, Chemical Homogeneity and Resonance Linewidth in Bismuth-Calcium-Vanadium Substitute YIG</li><li>Effect of Fe<sup>2+</sup> Ions on Magnetic Loss in Ferrimagnetic Garnets</li><li>Instability Threshold in Polycrystalline Co<sup>++</sup> Doped LiTi Ferrites</li><li>Devices</li><li>VHF High Power Y-Junction Circulator</li><li>A Study of Magnetostatic Wave (MSW) Theory and Technique in China</li><li>High-Power Millimeter Wave Y-Junction Circulator</li><li>YIG Tuned Harmonic Generator</li><li>A Non-Reciprocal Ferrite Resonance Circuit Using Folded Coplanar-Waveguide</li><li>Applications of Magnetized Ferrites to Antennas</li><li>Ferrite Phased Array Antenna Free Space Simulator</li><li>Development of Driver Circuit for Ferrite Phase Shifters</li><li>Design of Peak Power X-Band Circulator</li><li>An Alternative Temperature Stable Mic Circulator</li><li>Magneto-Mechnical Tunable Gunn Oscillator</li><li>Influence of Demagnetizing Field on the Magnetostatic Wave Dispersion</li><li>Microwave Plasma Spray in Low Pressure To Deposit Ferrite Thick Films</li><li>Miniaturized Ferrite Quarter Wave Plate</li><li>Section 12: Interdisciplinary</li><li>Recent Development of Ferrites in China</li><li>Physical and Chemical Properties of Magnetic Fluid Using Ferrite Material from Mine Drainage and Possibility for Some Applications</li><li>Physical Properties of Magnetic Fluids</li><li>Shape Transition and Instability of Large Ferrofluid Drops in Magnetic Field</li><li>New Applications of Ferrite Plating Technique</li><li>Selective Electroless Deposition of Ni on Ferrite Substrate</li><li>Hexagonal Perovskites in the BaFeO<sub>3-Y</sub> System</li><li>Semi Spin Glass Behaviour of Zn<sub>0.5</sub>Co<sub>0.5</sub>FeCrO<sub>4</sub></li><li>Order-Disorder in CaFe<sub>x</sub>Mn<sub>1-x</sub>O<sub>3-y</sub> Perovskitelike Ferrites</li><li>The A<sub>3</sub>M<sub>3</sub>O<sub>8</sub> Phase: A Structural Study</li><li>Twinning in the Ca<sub>y</sub>La<sub>1-y</sub>Fe<sub>x</sub>Cr<sub>1-x</sub>O<sub>3</sub> System</li><li>Solidification of Heavy Metal Ions into Stabilized Ferrite Sludge</li><li>A New Route to the Synthesis of Rare Earth Orthochromites</li><li>Ferrite Electrochemical Cell</li><li>Catalytic Behaviour of Ferromanganate Type Oxidic Spinels</li></ul>