Materials and applications for sensors and transducers : by E Hristoforou; D S Vlachos

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By E Hristoforou; D S Vlachos

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Extra info for Materials and applications for sensors and transducers : selected, peer reviewed papers from the 1st International Conference on Materials and Applications for Sensors and Transducers (IC-MAST), May 13-17 2011, Kos Island, Greece

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Lo: Mod. Phys. Lett. B Vol. 10 (1996) p. Y. : Mod. Phys. Lett. B Vol. 10 (1996) p. Y. Lo, G. Xu, D. Gann D: Phys. Lett. A Vol. 373 (2009) p. 3872 [13] L. Rey: Physica A Vol. 323 (2003) p. 67 [14] V. Elia, E. Napoli: International Journal of Design and Nature Vol 5 N°1, (2010) p. 39 [15] C. J. T. De Grotthuss : Ann. Chim. LVIII Vol 58, (1806) p 54 [16] E. Gileadi, E. Kirowa-Eisner: Electrochimica Acta Vol. 51 (2006) p. 6003 [17] I. Prigogine: Time, structure and fluctuations; Nobel Lecture, 8 December (1977) [18] G.

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Key Engineering Materials Vol. 495 31 Fig. 4 shows the relation between permittivity of the adsorbed substance and resonant frequency for different metamaterial layer thickness. 562 GHz. For the metamaterial sensor, average frequency shift increases with metamaterial layer thickness. 61GHz, respectively. Therefore, sensitivity of the metamaterial sensor can be greatly improved by increasing the thickness of the metamaterial layer. 5. It is seen that the electric field intensity increases with metamaterial thickness.

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