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Such changes are important because they can affect therapeutic and manufacturing behaviour of pharmaceutical materials and products.
Understanding the properties and behavior of pharmaceutical materials is critical to the design of a safe and effective dosage form.
Packing behavior and flowability of particulate material have long been acknowledged as important parameters for the processing of pharmaceutical materials.
Over the past decade, many different solvates of pharmaceutical materials with readily discernible physical and chemical characteristics, and marked differences in their pharmaceutical performance have appeared.
The results of dry coating of pharmaceutical materials (micro-particles), carried out in spout-fluid bed apparatus, designed by the authors are presented in the paper.
Compressibility of pharmaceutical materials is measured by a force displacement relationship which is commonly analysed using a well known method, the Heckel model.
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3 However, despite the fact that barbiturates have been extensively studied for over a century, the general monoreduction of barbituric acids remains unknown, 4 even though it would have considerable potential for the production and discovery of pharmaceuticals, materials, and polymers.
Specifically, a series of both electron-rich (1 b– e) and electron-deficient (1 f– h) 2-pyridyl MIDA boronates, representing substructural motifs that appear in a wide variety of pharmaceuticals, materials, and ligands, were successfully coupled to a representative series of sterically and electronically deactivated aryl chlorides (entries 1 7).
Whilst most recently the emphasis has been on pharmaceutical materials, an improved understanding of such properties is required for all forms of crystalline organic materials.
The effect of the elasticity of various pharmaceutical materials on the interfacial adhesion in bilayer tablets was investigated.
In the final section of this article, some areas for on-going research are discussed, including the need to critically assess the best method for the calculation of the specific free energy of adsorption with pharmaceutical materials.
More suggestions(15)
of pharmacological materials
of laboratory materials
of school materials
of hazardous materials
of pharmaceutical products
of waterproof materials
of pharmaceutical claims
of pharmaceutical applications
of good materials
of pharmaceutical substances
of biological materials
of recycled materials
of pharmaceutical nanotools
of pharmaceutical representatives
of pharmaceutical ingredients
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