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Results: 6
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A structure parameter for porous pharmaceutical tablets obtained with the aid of Wiener bounds for effective permittivity and terahertz time-delay measurement.
Prince Bawuah
,
Mousumi Chakraborty
,
Tuomas Ervasti
,
J Axel Zeitler
,
Jarkko Ketolainen
,
Patrick AC Gane
,
Kai-Erik Peiponen
Apr 27, 2016
Effective medium
Indomethacin
Microcrystalline cellulose
microstructures
Pharmaceutical tablet
terahertz
Permeability
Porosity
Solubility
Stress
Mechanical
Surface Properties
Tablets
technology
Pharmaceutical
Terahertz Spectroscopy
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Experimental validation of a dimensional analysis of spheronisation of cylindrical extrudates
J Parkin
,
KS Widjaja
,
MP Bryan
,
SL Rough
,
DI Wilson
May 12, 2016
Dimensional analysis
Extrusion-spheronisation
Microcrystalline cellulose
Pellet shape
Rounding
Published by:
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The evolution of pellet size and shape during spheronisation of an extruded microcrystalline cellulose paste
CLS Lau
,
Q Yu
,
VY Lister
,
SL Rough
,
DI Wilson
,
M Zhang
May 29, 2014
Breakage
Extrusion-spheronisation
Granulation
Microcrystalline cellulose
pellet
Rounding
Shape
Published by:
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Optics-based compressibility parameter for pharmaceutical tablets obtained with the aid of the terahertz refractive index
M Chakraborty
,
C Ridgway
,
P Bawuah
,
D Markl
,
PAC Gane
,
J Ketolainen
,
JA Zeitler
,
K-E Peiponen
Jul 06, 2017
The objective of this study is to propose a novel optical compressibility parameter for porous pharmaceutical tablets. This parameter is defined with the aid of the effective refractive index of a tablet that is obtained from...
Indomethacin
Microcrystalline cellulose
optical compressibility
Pharmaceutical tablet
skeletal bulk modulus
structural parameter
terahertz
Published by:
View Article
Stages in spheronisation
MP Bryan
,
LN Atherton
,
S Duffield
,
SL Rough
,
DI Wilson
Oct 17, 2014
Breakage
Extrusion-spheronisation
Microcrystalline cellulose
Rounding
Shape
Published by:
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Modeling the breakage stage in spheronization of cylindrical paste extrudates
Liguang Wang
,
Chia Wei Lim
,
Grace Zhen Li Ng
,
Sarah L. Rough
,
D. Ian Wilson
May 20, 2021
PARTICLE TECHNOLOGY AND FLUIDIZATION
population balance
pellet size
Granulation
Microcrystalline cellulose
rate constant
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