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Titlebook: Magnetic Nanoparticles; A Study by Synchrotr Adriana I. Figueroa Book 2015 Springer International Publishing Switzerland 2015 Alloy Nanopar

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Adriana I. Figueroaue.A reference work for researchers and engineers alike.InclIn the last 7 years, the ?rst edition of “Lock-in Thermography” has established as a reference book for all users of this technique for investigating electronic devices, especially solar cells. At this time, a vital further development of l
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Adriana I. Figueroaelectronic devices, especially solar cells. At this time, a vital further development of lock-in therm- raphy could be observed. Not only the experimental technique was improved by applying new and better infrared cameras, solid immersion lenses, and novel t- ing strategies, but also completely new
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Adriana I. Figueroaelectronic devices, especially solar cells. At this time, a vital further development of lock-in therm- raphy could be observed. Not only the experimental technique was improved by applying new and better infrared cameras, solid immersion lenses, and novel t- ing strategies, but also completely new
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electronic devices, especially solar cells. At this time, a vital further development of lock-in therm- raphy could be observed. Not only the experimental technique was improved by applying new and better infrared cameras, solid immersion lenses, and novel t- ing strategies, but also completely new
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Adriana I. Figueroaue.A reference work for researchers and engineers alike.InclIn the last 7 years, the ?rst edition of “Lock-in Thermography” has established as a reference book for all users of this technique for investigating electronic devices, especially solar cells. At this time, a vital further development of l
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Introduction,cles (NPs) are widely investigated not only as consequence of the general miniaturization of devices, but also because they constitute ideal systems to study finite-size and surface effects, those yielding new physical phenomena and enhanced properties with respect to their bulk counterpart [.–.].
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,Structural and Magnetic Properties of Amorphous Co–W Alloyed Nanoparticles, for their preparation allows to obtain self-organized arrays of particles with controlled geometries, i.e., particle sizes and interparticle distances. This potentiality has been expanded to study the magnetic properties of the amorphous Co–W NPs. In particular, we study the open question whether a
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