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Smart Materials for Energy, Communications and Security by Luk'yanchuk I.A., Mezzane D. (eds.)

By Luk'yanchuk I.A., Mezzane D. (eds.)

This quantity is because of the the NATO complex study Workshop on clever fabrics for strength, Communications and safeguard held in Marrakech, Morocco, December 2007 in body of the NATO - technological know-how for Peace application. Its goal is to evaluate numerous sizzling themes of fabrics physics similar with technological difficulties of contemporary society with the focal point in their implementation in Mediterranean discussion international locations: Algeria, Egypt, Mauritania, Morocco and Tunisia. The articles are written via global recognized specialists in fabrics technological know-how and engineering. They assessment the country of paintings, fresh achievements, attainable and already applied purposes within the following fields of fabrics technology: fabrics for transmission, remedy and garage of knowledge, multiferroic, magnetic and superconducting fabrics for spintronics, electrochromic and nitride-based semiconducting fabrics for infrared and optoelectronic units, carbon-based terahertz digital applied sciences, memory-capacious fabrics. power garage fabrics and photovoltaic cells Piezo and Electroactive fabrics for detectors, acoustic transducers and gasoline sensors. sensible fabrics for electronics, environmental protection, dimension and characterisation options.

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4. A. I. Buzdin, Rev. Mod. Phys. 77, 935 (2005). 5. L. R. Tagirov, Physica C 307, 145–163 (1998). 6. V. Zdravkov, A. Sidorenko, G. Obermeier, S. Gsell, M. Schreck, C. Müller, S. Horn, R. Tidecks, L. R. Tagirov, Phys. Rev. Lett. 97, 057004 (2006). 7. V. V. Ryazanov, V. A. Oboznov, A. Yu. Rusanov, V. A. Veretennikov, A. A. Golubov, J. Aarts, Phys. Rev. Lett. 86, 2427 (2001). 8. A. S. Sidorenko, V. I. Zdravkov, A. Prepelitsa, C. Helbig, Y. Luo, S. Gsell, M. Schreck, S. Klimm, S. Horn, L. R. Tagirov, and R.

Com I. A. Luk’yanchuk and D. ), Smart Materials for Energy, Communications and Security. V. 2008 31 32 E. DHAHRI ET AL. 11 The aim of recent studies on MCE is to look for the most useful magnetic materials having large entropy change at low magnetic field for a possible magnetic refrigeration application from low to the sub room temperature. A big attention was paid to study the interplay between structure, magnetic and transport properties in hole-doped manganites. 5). The large entropy change obtained around TC and the relative cooling power (RCP) values affirm that these compounds could be considered as potentials candidates for magnetic refrigeration at room temperature.

V. 2008 21 22 M. POPESCU twice as much power as a human brain, while it has 1,000 times fewer transistors than the number of cells in the brain. The electronics goes step-by-step to the core of the solid or condensed matter, at the nano-scale exploiting the huge possibilities of the atomic networks. One of the very important class of materials that is foreseen to be the key factor for the forthcoming smart computers in the informatics is the class of chalcogenides: materials that have in their composition at least one chalcogen.

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