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By Tatsuki Ohji, Mrityunjay Singh, Sanjay Mathur, Andrew Gyekenyesi, Michael Halbig

Over a hundred and seventy contributions (invited talks, oral shows, and posters) have been offered by means of members from universities, examine associations, and undefined, which provided interdisciplinary discussions indicating robust clinical and technological curiosity within the box of nanostructured structures. This factor comprises 23 peer-reviewed papers that hide numerous points and the newest advancements on the topic of nanoscaled fabrics and sensible ceramics

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Extra resources for Advanced Processing and Manufacturing Technologies for Nanostructured and Multifunctional Materials: Ceramic Engineering and Science Proceesings,

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C. Oliver et G. M. Pharr, Improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments, J Mater Res, 7, [6], 1564–83 (1992). 33 V. E. Semenov et K. I. Rybakov, Enhanced mass and charge transfer in solids exposed to microwave fields, in Advances in Microwave and Radio Frequency Processing, Springer, 472– 481 (2006). 34 C. Benaqqa, J. Chevalier, M. Saadaoui, G. H. He, O. Standard, T. Huang, B. Latella, M. Ramesh, The effects of sintering temperature on the properties of hydroxyapatite, Ceram Int 20, 221-230 (2000) 37 R.

K. Agrawal, Y. Fang, D. M. Roy, et R. Roy, Fabrication of hydroxyapatite ceramics by microwave processing, in Materials Research Society Symposium Proceedings, 269, 231–231 (1993). 20 E. Savary, S. Marinel, F. Gascoin, Y. Kinemuchi, J. Pansiot, et R. Retoux, Peculiar effects of microwave sintering on ZnO based varistors properties, J Alloys and Compds, 509, [21[, 6163– 69 (2011). · 31 Comparison of Conventional and Microwave Sintering of Bioceramics 21 A. Thuault, S. Marinel, E. Savary, R. Heuguet, S.

Nitrogen (lines are calculated from regression equations obtained using all data points) STRUCTURAL IMPLICATIONS Based on the analyses above, it is quite clear that nitrogen increases glass transition temperature while fluorine decreases it much more markedly. This is attributed to the more rigid structure associated with N for O substitution (3 [-O-] = 2[-N<]) and the disruption of the glass network by fluorine (2[ࡋAl-O-] + F- = [ࡋAl-F] + [ࡋAl-O-]). Thus nitrogen associates the glass network by crosslinking it while fluorine disrupts the network by incising network bonds.

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