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Titlebook: Advances in Nanoscale Magnetism; Proceedings of the I Bekir Aktas,Faik Mikailov Conference proceedings 20091st edition Springer-Verlag Berl

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https://doi.org/10.1007/978-3-540-45363-5produced consisting of pseudo-single domain “bits” with different coercivity. With the magnetization reversal of those structures, electromagnetic radiation pulses arise whose characteristics have been investigated in detail. It was experimentally revealed about the huge increasing of the radiation
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Jürgen Warnatz,Ulrich Maas,Robert W. Dibblesile stress during thermal treatment are studied. Clear differences have been found in the nano-crystals growth mechanisms and nano-crystallization of the bulk and surface of the ribbons depending on the treatment in ribbons. The use of a tensile stress is found to activate the nucleation rate, whil
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https://doi.org/10.1007/978-1-349-03354-6ning of magnetoelectronic devices. The most essential characteristics of GNMs are discussed in the chapter within the frame of percolation models, that establish correlation between microstructure and carrier transport mechanisms in MMCs..The chapter summarizes experimental results on tailoring of s
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Bimolecular Reaction Rate Coefficients,of the structures are considered: (1) 3D and 2D lattices populated fully or partially by ferromagnetic granules, and (2) 3D and 2D spatially random systems of granules. A variety of granules’ forms are also have been taken into account: we consider point and spherical dipoles, rod-like dipoles, and
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Ronald K. Hanson,Siamak Salimiants produced by the modified atomic symmetry in such low dimensional systems, the magnetic coupling between the particles also plays a significant role in determining the overall magnetic behavior of a magnetic nanoparticle assembly. In this Chapter, we describe a theoretical model that accounts for
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