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Titlebook: Handbook of Advanced Magnetic Materials; Vol 1. Nanostructura Yi Liu,David J. Sellmyer,Daisuke Shindo Book 2006 Springer-Verlag US 2006 Clu

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https://doi.org/10.1057/9780230508484heir characteristic lengths are listed in Fig. 2. 1. With the maturing of epitaxial film growth techniques, such magnetic phenomena in two-dimensional systems are being extensively investigated with thin films and multilayers. In addition, a new forefront is emerging in fabricating laterally confine
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Graziella Benedetto,Gian Luigi Corintots with the required structural and chemical qualities. In order to study these objects, new techniques such as magneticforce microscopy, magnetometry based on micro-Hall probes or micro-SQUIDs(superconducting quantum interference device) were developed. This led to a new understanding of the magnet
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The Role of the University in Society,o account, with Fe sublattice being treated phenomenologically (.). Similar analyses were made by Givord et al. (1988), Cadogan et al. (1988) and Radwanski et al. (1990b). A comparison of crystalline magnetization process (CEF) and molecular field parameters determined by these groups has been made
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,The Swedish Conflict Rules — A Resumé,be analyzed is also extremely small: as small as a single heavy atom. Simplicity: in the imaging mode when the conditions are set right the image is simply the projection of the structure. This eliminates the tedious image or diffraction simulation. Versatility: TEM can be used in both image mode an
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Transformation and Renewal Through the Arts,is saturation magnetization) due to the remanence enhancement effect from exchange-coupled soft and hard nanograins. In both cases, the nanocrystalline microstructure is produced via the crystallization route from the amorphous precursors that are produced by rapidly solidifying melts; thus understa
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