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The Journal of Pharmacy and Pharmacology|March 21, 1998
The effects of lag-time and dwell-time on the compaction properties of 1:1 paracetamol/microcrystalline cellulose tablets prepared by pre-compression and main compressionO F Akande, J L Ford, P H Rowe, et al.Drug Development and Industrial Pharmacy|May 29, 2000
Comparative study of drug release from pellets coated with HPMC or SureleaseF Sadeghi, J L Ford, M H Rubinstein, et al.International Journal of Pharmaceutics|November 7, 2000
Highly compressible paracetamol: I: crystallization and characterizationH A Garekani, J L Ford, M H Rubinstein, et al.International Journal of Pharmaceutics|November 7, 2000
Highly compressible paracetamol - II. Compression propertiesH A Garekani, J L Ford, M H Rubinstein, et al.International Journal of Pharmaceutics|September 30, 1999
Formation and compression characteristics of prismatic polyhedral and thin plate-like crystals of paracetamolH A Garekani, J L Ford, M H Rubinstein, et al.Drug Development and Industrial Pharmacy|January 5, 2002
Effect of compression force, compression speed, and particle size on the compression properties of paracetamolH A Garekani, J L Ford, M H Rubinstein, et al.Pharmaceutical Development and Technology|August 6, 1999
Release of propranolol hydrochloride from matrix tablets containing sodium carboxymethylcellulose and hydroxypropylmethylcelluloseM A Dabbagh, J L Ford, M H Rubinstein, et al.Journal of Pharmaceutical Sciences|March 1, 1976
Granule consolidation during compactionM H RubinsteinJournal of Pharmaceutical Sciences|May 29, 2000
The effect of ultrasonic vibration on the compaction characteristics of paracetamolM Levina, M H RubinsteinInternational Journal of Pharmaceutics|March 4, 1999
Thermal analysis of hydroxypropylmethylcellulose and methylcellulose: powders, gels and matrix tabletsJ L FordPageof 6