Examples of using Encapsulation efficiency in English and their translations into Portuguese
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Colloquial
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Official
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Medicine
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Financial
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Ecclesiastic
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Ecclesiastic
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Computer
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Official/political
ph, encapsulation efficiency, morphology and stability indicative evaluation at different temperatures over time.
to evaluate its physico-chemical characteristics together with its encapsulation efficiency and controlled release.
optimize the yield and encapsulation efficiency of cardanol.
cost and encapsulation efficiency associated with conventional liposomes.
The obtained microparticles presented high encapsulation efficiency values(between 89% and 114%) and zeta potential values greater than +17.7 mv,
They were performed 24 factorial design for the identification of the parameters that influence the encapsulation efficiency in different polymer matrices
to encapsulate and to evaluate encapsulation efficiency and retention efficiency(at temperature of 25°c and 55°c) of.
zeta potential and pdi; atomic force microscopy for morphological evaluation; the encapsulation efficiency was tested also,
test their ability to self-assemble and verify their encapsulation efficiency using the self-quenching fluorescent dye eosin y. the secondary structures of the different ratios bapcs were analyzed by circular dichroism(cd) and their sizes determined using dynamic light scattering(dls) technique.
presence of microparticles and the encapsulation efficiency were evaluated as responses.
various methods of encapsulation were tested and the formed particles were characterized according encapsulation efficiency, release of acid in deionized water and optical microscopy, to reveal the particle morphology and particle diameter. it was shown that paraffin allows for e.
Moreover, these systems showed encapsulation efficiencies close to 100.
The results indicated that it is possible to prepare particles containing acid with great encapsulation efficiencies and satisfactory release on shearing of methanesulfonic
potential zeta, encapsulation efficiencies, tem, ir and dsc.
with drug contents close to the theoretical value(1mg/ml), encapsulation efficiencies close to 100%
The maximum encapsulation efficiency was 100%
pdi below 0.3 and a high encapsulation efficiency.
The average particle size was 103.5± 0.44 nm and the encapsulation efficiency was higher than 99.
Using experimental design, the optimal parameters to reduce the particle size and to maximize the encapsulation efficiency were determined.
film hydration method and were characterized by particle size and encapsulation efficiency.