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ArticleEVALUATION OF A NEWLY FORMULATED AUTOPOLYMERIZED ACRYLIC RESIN PERMANENT DENTURE BASE MATERIAL (In Vitro Study)
ArticleEffect Of Flexural Strength Of Denture Base Resin Reinforced By Three Different Nanoparticle Materials (In Vitro Study)
ArticleEffect Of Flexural Strength Of Denture Base Resin Reinforced By Three Different Nanoparticle Materials (In Vitro Study)
ArticleFracture strength of methacrylate resin based versus resin free composite restorations supporting occlusal rest of removable partial denture: In-Vitro Study
ArticleFracture strength of methacrylate resin based versus resin free composite restorations supporting occlusal rest of removable partial denture: In-Vitro Study
ArticleEVALUATION OF FRACTURE RESISTANCE OF TWO LAMINATE VENEERS CERAMIC MATERIALS AT TWO LOADING ANGULATIONS (IN-VITRO STUDY)
ArticleEVALUATION OF FRACTURE RESISTANCE OF TWO LAMINATE VENEERS CERAMIC MATERIALS AT TWO LOADING ANGULATIONS (IN-VITRO STUDY)
ArticleFRACTURE RESISTANCE OF RELINED MICROWAVE-CURED HIGH IMPACT VERSUS CONVENTIONAL HEAT-CURED ACRYLIC RESIN MANDIBULAR DENTURE BASES: AN IN VITRO STUDY
ArticleFRACTURE RESISTANCE OF RELINED MICROWAVE-CURED HIGH IMPACT VERSUS CONVENTIONAL HEAT-CURED ACRYLIC RESIN MANDIBULAR DENTURE BASES: AN IN VITRO STUDY
ArticleEvaluation of Fracture Resistance of Fiber-Reinforced Resin Composite Restorations in Deep Class I Cavities: A Comparative In Vitro study.
ArticleEvaluation of Fracture Resistance of Fiber-Reinforced Resin Composite Restorations in Deep Class I Cavities: A Comparative In Vitro study.
ArticleEVALUATION OF SHEAR BOND STRENGTH OF HIGH-PERFORMANCE POLYMERS TO ITS RESIN VENEERING AND TO DENTIN (IN VITRO STUDY)
ArticleEVALUATION OF SHEAR BOND STRENGTH OF HIGH-PERFORMANCE POLYMERS TO ITS RESIN VENEERING AND TO DENTIN (IN VITRO STUDY)
ArticleComparison of fracture resistance between Implant-supported Bis-acryl Interim 3-unit FDPs using 5 different strengthening mechanisms: An In-Vitro Study.
ArticleComparison of fracture resistance between Implant-supported Bis-acryl Interim 3-unit FDPs using 5 different strengthening mechanisms: An In-Vitro Study.