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Journal of Oral Rehabilitation|November 17, 1999
The properties of polymerizable luting cementsJ W Nicholson, M A McKenzieBiomaterials|July 2, 2003
The physical properties of conventional and resin-modified glass-ionomer dental cements stored in saliva, proprietary acidic beverages, saline and waterM A McKenzie, R W A Linden, J W NicholsonJournal of Oral Rehabilitation|June 6, 2003
Changes in properties of polyacid-modified composite resins (compomers) following storage in acidic solutionsJ W Nicholson, E Gjorgievska, B Bajraktarova, et al.Journal of Materials Science. Materials in Medicine|September 7, 2004
Variations in the compressive strength of dental cements stored in ionic or acidic solutionsJ W Nicholson, M A McKenzie, R Goodridge, et al.Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine|June 5, 1998
Glass-ionomers in medicine and dentistryJ W NicholsonJournal of Materials Science. Materials in Medicine|September 7, 2004
The physics of water sorption by resin-modified glass-ionomer dental cementsJ W NicholsonJournal of Materials Science. Materials in Medicine|September 7, 2004
Studies in the setting of polyelectrolyte cements: part VII. The effect of divalent metal chlorides on the properties of zinc polycarboxylate and glass-ionomer dental cementsJ W NicholsonJournal of Materials Science. Materials in Medicine|September 7, 2004
The effect of strontium oxide in glass-ionomer cementsS Deb, J W NicholsonBiomaterials|January 1, 1997
Changes in compressive strength on ageing in glass polyalkenoate (glass-ionomer) cements prepared from acrylic/maleic acid copolymersJ W Nicholson, F AbidenPageof 11