CrossRef Text and Data Mining
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Difference in Bonding Strength of RMGIC according to Type of Hemostatic Agent in Primary Tooth
Seolah Back, Joonhaeng Lee, Jongbin Kim, Miran Han, Jong Soo Kim
J Korean Acad Pediatr Dent. 2021;48(4):460-466.   Published online November 30, 2021

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Study on the Multi-Tooth Meshing Bending Strength for Involute Gear Drive with Small Tooth Number Difference
Applied Mechanics and Materials. 2014;526:236-241   Crossref logo

Bonding agent and polymerization mode influence bond strength
Dental Abstracts. 2007;52(1):53-55   Crossref logo
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Hemostatic Agent
Encyclopedia of Trauma Care. 2015;740-740   Crossref logo

Difference in bond strength according to filling techniques and cavity walls in box-type occlusal composite resin restoration
Journal of Korean Academy of Conservative Dentistry. 2009;34(4):350   Crossref logo
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Reasons for tooth extractions in dental practices in Ontario, Canada according to tooth type
International Dental Journal. 1997;47(1):3-8   Crossref logo
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Graphene functionalized with nanosilver particle‐modified methacrylate‐based bonding agent improves antimicrobial capacity and mechanical strength at tooth orthodontic bracket interface
Polymer Composites. 2021;42(11):5850-5858   Crossref logo
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Comparative evaluation of shear bond strength of universal bonding agent and total-etch bonding agent on superficial and deep dentin
International journal of health sciences. 2022;1481-1490   Crossref logo
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Roll Bonding of Two Materials Using Temperature to Compensate the Material Strength Difference
Advanced Materials Research. 2014;966-967:471-480   Crossref logo

Theoretical Analysis of the Strength of Internal Gear Drive With Zero-Tooth-Difference
Threaded and Riveted Connections, Design Issues, Reliability, Stress Analysis, and Failure Prevention. 2001;   Crossref logo
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Design of New Type Involute Planetary Gear Reducer of Small Tooth Number Difference
Advanced Materials Research. 2012;490-495:2076-2080   Crossref logo