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Research Article

The Effect of Low- and High-Humidity Aging on the Hardness, Disintegration Time and Dissolution Rate of Tribasic Calcium Phosphate-Based Tablets

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Pages 545-562 | Published online: 20 Oct 2008

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J. T. Carstensen, Rohic Kothari & Z. T. Chowhan. (1980) Correlation Between Tablet Disintegration and In Vitro Dissolution. Drug Development and Industrial Pharmacy 6:6, pages 569-571.
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Articles from other publishers (6)

Beverly Nickerson, Angela Kong, Paul Gerst & Shangming Kao. (2018) Correlation of dissolution and disintegration results for an immediate-release tablet. Journal of Pharmaceutical and Biomedical Analysis 150, pages 333-340.
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J.B. Wade, G.P. Martin & D.F. Long. (2013) A methodological approach for determining the effect of moisture content on the compaction properties of powders: Granular hydroxyapatite. Powder Technology 246, pages 511-519.
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Gerad K Bolhuis, Anko C Eissens & Edzo Zoestbergen. (2001) DC Calcium lactate, a new filler-binder for direct compaction of tablets. International Journal of Pharmaceutics 221:1-2, pages 77-86.
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Gerad Bolhuis & Zak Chowhan. 1995. Pharmaceutical Powder ComPattion Technology. Pharmaceutical Powder ComPattion Technology 419 500 .
P. C. Schmidt & R. Herzog. (1993) Calcium phosphates in pharmaceutical tableting. Pharmacy World & Science 15:3, pages 116-122.
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Paul J. Jarosz & Eugene L. Parrott. (1982) Factors Influencing Axial and Radial Tensile Strengths of Tablets. Journal of Pharmaceutical Sciences 71:6, pages 607-614.
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