Materials Processing in Magnetic Fields: Proceedings of the International Workshop on Materials Analysis and Processing in Magnetic Fields

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Table of Contents

Application of high magnetic fields in materials processing 3
High magnetic fields effects on solid state transformations at high temperature 11
Enhancement of material properties by magnetic field assisted phase transformation 19
Experimental investigation of the crystallization of BHF in high magnetic fields 29
Variation of phase transformation temperature in FE-C alloys in a high magnetic field 41
Martensitic transformation in some ferrous alloys under magnetic field 48
Exploring ultra-high magnetic field processing of materials for developing customized microstructures and enhanced performance 55
Fundamentals and applications of grain boundary dynamics in high magnetic fields 66
Enhancement of texture and critical current density in Bi[subscript 2]Sr[subscript 2]Ca[subscript 1]Cu[subscript 2]O[subscript 8] superconducting tapes through magnetic field processing 80
Application of high magnetic field to texture modification in zinc alloy 91
Texturing from liquid to solid state by aligning anisotropic magnetic nuclei in high fields 102
Refractive indices of water and aqueous electrolyte solutions under high magnetic fields 115
Synthesis of carbon materials by the imposition of a high magnetic field 124
Highly excited molecules in magnetic fields 136
Application of high magnetic field to chemical and physical processes 141
Magneto-chemical systems under strong magnetic fields: fundamentals and applications 147
Applications of AC and DC magnetic fields in metallurgical and crystal growth processes 157
Electromagnetic processing of materials: from the concepts to industrial applications 169
Semiconductor crystal growth in static and rotating magnetic fields 178
Removal system of arsenic from geothermal water by magnetic separation technology with a superconducting magnet 197
Magnetically enhanced solid-liquid separation 206
New applications of magnetic separation using superconducting magnets and colloid chemical processes 220
Nanomagnetics in biotechnology 229
Strong magnetic field induced changes of gene expression in arabidopsis 238
New applications of magnetic field to human friendly materials and human supportive systems 243
Magnetic orientation in biology : virus structure - blood clot assembly - cell guidance 249
Manipulating cells with static magnetic fields 257
Effects of magnetic fields on feeble magnetic materials
Application of magnetic levitation to processing of diamagnetic materials 278
Protein crystal growth in low gravity provided by a new type of super conducting magnet 285
Alignment of single wall carbon nanotubes under high magnetic fields utilizing a selfnorganizing of epoxy matrix 295
Enhancement of nano-mechanical properties of an epoxy processed under high magnetic fields 303
Processing of polymers using magnetic fields 310
Processing of polymeric materials under magnetic fields 321
Magnetic field control of structures and properties of diamagnetic molecular assemblies 330
Magnetic alignment and crystallization behavior of isotactic polystyrene 337
Industrial applications of magnetic resonance 347
Generation of uniform magnetic force fields 352
Effects of magnetic fields on explosive welding of metals and explosive compaction of powders 360
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