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Titlebook: Magneto-Science; Magnetic Field Effec Masuhiro Yamaguchi,Yoshifumi Tanimoto Book 2006Latest edition Springer-Verlag Berlin Heidelberg 2006

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ible explanation in the interactions among agents. However, the complexity, originating from the presence of non-linearity and interactions, often limits the analytical approach to the dynamics of these models. In this paper we show that even a very simple model of a financial market with heterogene
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Fundamentals of Magnetic Field Effects,onds to thermal energy of 0.67 K or electric energy of 58 .V. Furthermore, thermal disturbance reduces magnetic energy in nonferromagnetic systems. It is 12.5 mJ mol. in 1 T at 300 K for a paramagnetic system. This is about 10. the thermal energy of 2.5 kJ mol. at the same temperature. Consequently,
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Effects of Magnetic Force,ds near 1 T which are generated by conventional magnets. This force is proportional to the so-called magnetic force field B(∂B/∂z). As a consequence, using a high magnetic field magnet above 15 T makes possible to levitate diamagnetic materials in air against gravitational force.
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Effects of Lorentz Force and Magnetohydrodynamic Effects,c (MHD) effects for electrolysis. But new aspects of MFEs have been appearing as a result of microscopic investigations under the influence of high magnetic fields. In this chapter, we describe the novel phenomena and mechanisms of magneto-electrochemical processing, metal deposition under magnetic
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Magneto-thermodynamic Effects,n. Therefore, for many years it was believed that magnetic field could not affect chemical equilibrium. However, this is not always correct. Magnetic energy is proportional to the square of magnetic flux density. Thus the physical and chemical phenomena which cannot be observed at 1 T become observa
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Novel Magnetic Field Effects, are not well understood at present. For example, adsorption of gas to solid is significantly affected by an external magnetic field of less than 1 T. The effects cannot be explained by the mechanisms of MFEs discussed in Chapter 1. The novel effects of magnetic fields are important from both basic
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A Deep Knowledge-Based Evaluation of Enterprise Applications Interoperability,tion concept reveals causal dependencies and the goal-driven in-formation transformations of the enterprise management activities (an in-depth knowledge). An assumption is that autonomic interoperability is achievable by gathering knowledge from different sources in an organization, particularly ent
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