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Does Surface Finishing Method Can Alter the Colour of Monolithic Zirconia Restoration?

. Comparative analysis of transmittance for different types of commercially available zirconia and lithium disilicate materials. J Adv Prosthodont , 2014; 6:456-461. 13. Kim HK, Kim SH . Effect of the number of coloring liquid applications on the optical properties of monolithic zirconia. Dental Materials , 2014; 30:e229-e237. 14. Scurria MS, Powers JM . Surface roughness of two polished ceramic materials. J Prosthet Dent , 1994; 71:174-177. 15. Mundhe K, Jain V, Pruthi G, Shah N . Clinical study to evaluate the wear of natural enamel antagonist to

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Optical properties of translucent zirconia: A review of the literature

influence of low-temperature degradation and cyclic loading on the fracture resistance of monolithic zirconia molar crowns. J Mech Behav Biomed Mater 2015; 47: 49-56. 27. Sorenson JA. The Lava all-ceramic system: CAD/CAM zirconium. Prosthodontics for the 21st century. Synergy in Dentistry 2003; 2(suppl to Contemp Esthet Restor Pract): 3-6. 28. Hannink RHJ, Kelly PM, Muddle BC. Transformation toughening in zirconia-containing ceramics. J Am Ceram Soc 2000; 83: 461-87. 29. McLaren EA, Giordano RA. Zirconia-based ceramics: Material properties, aesthetic and

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Clinical Evaluation of CAD/CAM Indirect Zirconia Restorations of Severely Destroyed Vital Teeth in the Posterior Area – Early Clinical Results

GM, Silva NR, Paulillo LA, et al. Bond strength to high-crystalline content zirconia after different surface treatments. J Biomed Mater Res B Appl Biomater 2010;93:318-23. 17. Sulaiman TA, Abdulmajeed AA, Donovan TE, et al. Fracture rate of monolithic zirconia restorations up to 5 years: A dental laboratory survey. J Prosthet Dent 2016;116(3):436-9. 18. Felden A, Schmalz G, Federlin M, et al. Retrospective clinical investigation and survival analysis on ceramic inlays and partial ceramic crowns: results up to 7 years. Clin Oral Investig 1998

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Activity of monolithic Pd/Al2O3 catalysts in the combustion of mine ventilation air methane

. & Diez, F.V. (2005). Oxidation of methane over palladium catalysts: effect of the support, Chemosphere , 58 (1), 9-17. DOI: 10.1016/j.chemosphere.2004.09.012. Choudhary, T.V., Banerjee, S. & Choudhary, V.R. (2005). Influence of PdO content and pathway of its formation on methane combustion activity, Catalysis Communications , Vol. 6, 97-100. DOI: 10.1016/j.catcom.2004.11.004. Nijhuis, T.A., Beers, A.E.W., Vergunst, T., Hoek, I., Kapteijn, F. & Moulijn, J.A. (2001) Preparation of monolithic catalysts, Catalysis

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Influence of the exchanged metal ions (Cu, Co, Ni and Mn) on the selective catalytic reduction of NO with hydrocarbons over modified ferrierite

reduction of NO with methane. Appl. Catal . B 41, 129-136. DOI: 10.1016/ S0926-3373(02)00205-9. 12. Otsuka, H. (2001). The selective catalytic reduction of nitrogen oxides by methane on noble metal-loaded sulfated zirconia. Appl. Catal. B 33, 325-333. DOI: 10.1016/S0926-3373(01)00190-4. 13. Makoto, M., Yoshifumi, H. & Chikafumi, Y. (1997). Reduction of nitrogen oxides with hydrocarbons catalyzed by bifunctional catalysts. Catal. Today 38, 157-162. DOI: 10.1016/ S0920-5861(97)00060-6. 14. Ohtsuka, H. & Tabata, T. (2001

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