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The powder blend was compressed under constant pressure using a single-punch tabletting machine into 140 mg tablets, each containing 50 mg of atenolol.
The resultant powder blend was compressed under constant pressure using a single-punch tabletting machine (Kilburns, Allahabad, India) into 120 mg tablets, each containing a total of 10 mg ATV.
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When a lubricated blend is compressed into tablets, the tablet thickness produced by the commercial tablet press is often thicker than that by a laboratory tablet press.
The blends were compressed using a two by three experimental design, varying tablet fill cam depth and tablet thickness, respectively.
Three different lubricated blends were compressed into tablets using a laboratory tableting machine equipped with SAS punches, and any differences in tablet thickness or capping phenomenon were observed.
The blends were compressed into tablets by a high speed rotary press using a specially designed hopper, which was intended to simulate segregation tendency at large scale tablet manufacturing.
Matrix tablet of both cocrystal and CBZ was prepared with HPMC, Soluplus, and Kollidon VA 64 at varying drug to polymer ratios as shown in Tables 1 and 2. All blends were compressed with Zwick, USA, using a 10 mm cylindrical tooling by applying 10 kN compression force after sieving; tablet tooling was lubricated with magnesium stearate before compression.
The blend of powders was compressed for 5 s in a hydraulic press (Delfabro, Argentina) at 1000, 1500, and 2000 mPa for conventional tablets (CTs) and at 250, 500, and 1000 mPa for RDTs with 13.0 mm flat punches.
The left lung was compressed.
The underlying lung was compressed.
Intermediately data was compressed via hadoop-lzo.
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