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Development of hot-melt extrusion as a novel technique for the ...

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8.5d A plot <strong>of</strong> <strong>the</strong> logarithm <strong>of</strong> HCS rele<strong>as</strong>ed <strong>as</strong> a function <strong>of</strong> <strong>the</strong> logarithm <strong>of</strong>time according to <strong>the</strong> Korsmeyer–Pepp<strong>as</strong> model. Each result shows <strong>the</strong>mean±S.D. (n=3).166CHAPTER 10Supp. 1 N 1s BE peaks <strong>of</strong> DPD and DPD b<strong>as</strong>ed extruded <strong>for</strong>mulations. 172Supp. 2 XPS O 1s peaks <strong>for</strong> PRP, L100 and PRP/L100 <strong>for</strong>mulations. 173Supp. 3 C 1s BE peaks <strong>for</strong> L100-55, PRP/L100-55 and DPD/L100-55. 174Supp. 4 O 1s BE peaks <strong>for</strong> L100-55, DPD and DPD/L100-55 <strong>for</strong>mulations. 175Supp. 5 Part, 1 H T 1 spectra (aromatic region) <strong>for</strong> <strong>the</strong> propanolol HCl/ Eudragit L-176100 <strong>for</strong>mulation.Supp. 6 Part, 1 H T 1 spectra (aromatic region) <strong>for</strong> <strong>the</strong> propanolol HCl. 177Supp. 7 Part, 1 H T 1 spectra <strong>for</strong> <strong>the</strong> diphenhydramine HCl/Eudragit L-100178<strong>for</strong>mulationSupp. 8 Part, 1 H T 1 spectra <strong>for</strong> diphenhydramine HCl. 179xxv | P a g e

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